#data Centers Precision Cooling systems UAE
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uninterruptible power supplies Line interactive for office
The uninterruptible power supply Line interactive for office is an intelligent, high performance protection for your servers and equipment. It features surge arrestors and relay units that protect against voltage transients, ensuring that critical equipment stays up and running even when other parts of the infrastructure are disrupted by brownouts or power outages
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Common Challenges and Solutions for High Capacity Water Chillers in Industrial Use
In industries ranging from manufacturing to data centers, high capacity water chillers play a crucial role in maintaining consistent temperatures, preventing overheating, and ensuring smooth operations. However, like any other sophisticated equipment, these water chillers face unique challenges that can impact their performance and lifespan. Whether you're new to the concept or looking to enhance your knowledge, this article dives into the common challenges in industrial water chillers and practical solutions from top Water Chiller Manufacturers in the UAE.
What is a Water Chiller?
Water chillers are complex machines designed to cool water, which is then circulated through various systems, removing excess heat to maintain optimal conditions. Imagine them as the giant air conditioners of the industrial world, except they focus on cooling water instead of air. This chilled water is essential for applications like food processing, power plants, and chemical industries.
Industrial Applications of High Capacity Water Chillers
High-capacity water chillers are indispensable for several industrial processes, such as:
Manufacturing: Keeping machinery and products at precise temperatures.
Data Centers: Maintaining cool environments to protect equipment from overheating.
Food & Beverage Industry: Ensuring that processes occur under sanitary and temperature-controlled conditions.
Pharmaceuticals: Cooling reactions and products to meet stringent quality standards.
These diverse applications demonstrate the importance of reliable and efficient water chillers, especially in regions like the UAE, where hot climates can stress cooling systems.
Key Challenges Faced by Water Chillers
Operating large water chillers can be a balancing act, and each application presents unique challenges. Below, we explore these common challenges and the potential solutions offered by Water Chiller Manufacturers in the UAE.
Temperature Control and Fluctuations
Maintaining stable temperature control is paramount in industries where minor fluctuations can halt operations. Even a slight deviation can compromise products, machinery, and safety protocols.
Solution: Modern water chillers are often equipped with advanced controls that detect and adjust for temperature fluctuations. By investing in a chiller that offers precision temperature management, businesses can reduce downtime and maintain optimal conditions.
Energy Efficiency and Power Consumption
Water chillers require substantial energy to operate, and their efficiency is critical in areas where electricity costs are high, like the UAE. High energy consumption can inflate operating costs and increase environmental impact.
Solution: Energy-efficient chillers use features like variable speed compressors and economizers to lower energy use without compromising cooling performance. Partnering with experienced manufacturers who prioritize energy-efficient designs can make a significant difference in long-term costs and sustainability.
Water Quality and Maintenance
Poor water quality is a major issue, as it can lead to scaling, corrosion, and microbial growth, which degrade the system's performance over time.
Solution: Installing water filtration systems or chemical treatments can prevent contaminants from entering the chiller, protecting its internal components. Regular testing and maintenance further ensure that the water quality remains ideal, extending the chiller's life.
Mechanical Wear and Tear
High-capacity chillers operate under intense conditions, which can cause wear and tear over time, leading to decreased efficiency or, in the worst case, equipment failure.
Solution: To combat mechanical degradation, regular servicing is essential. Working with Water Chiller Manufacturers in the UAE who provide maintenance contracts and responsive support services can keep systems running efficiently and reduce downtime.
Environmental and Noise Concerns
High-capacity chillers, if not optimized, can produce significant noise and may impact surrounding areas. In densely populated areas or noise-sensitive industries, this becomes a key concern.
Solution: Manufacturers now offer noise-reducing technologies and insulation options for water chillers, creating quieter operational systems. Choosing chillers that meet environmental regulations also ensures compliance with UAE’s environmental standards.
Regular Maintenance Strategies
To ensure optimal functioning, a proactive maintenance strategy is key. This includes scheduling regular inspections, cleaning components, and updating software.
Preventative Maintenance
Preventative maintenance involves regular checks that can catch potential issues early. These checks might include coolant levels, filter changes, and pressure tests.
Predictive Maintenance
Using data analytics, predictive maintenance enables businesses to anticipate when a part may need replacement. This proactive approach minimizes sudden breakdowns and improves the chiller’s lifespan.
Working with Reliable Water Chiller Manufacturers in UAE
Selecting a trusted partner for industrial chillers in the UAE can make a world of difference. Top Water Chiller Manufacturers in the UAE understand the regional challenges, such as high ambient temperatures and water quality concerns, and tailor their solutions accordingly. They can offer a range of products, from compact units to high-capacity systems, with warranties and after-sales support for added assurance.
High-capacity water chillers are indispensable in various industrial sectors, providing the necessary cooling that keeps operations running smoothly. While there are numerous challenges in managing these complex systems, a combination of advanced technology, regular maintenance, and collaboration with Water Chiller Manufacturers in the UAE can help industries achieve efficient, reliable, and sustainable cooling.
Frequently Asked Questions (FAQs)
1. What factors should I consider when choosing a water chiller?When choosing a water chiller, consider factors like capacity requirements, energy efficiency, environmental impact, and maintenance support from the manufacturer.
2. How often should a high-capacity chiller undergo maintenance?It depends on the usage and the environment. Generally, bi-annual inspections are recommended, but some chillers may require monthly checks depending on their operating conditions.
3. What are the environmental benefits of modern water chillers?Modern chillers offer energy-saving features and eco-friendly refrigerants, which reduce greenhouse gas emissions and improve overall energy efficiency.
4. Can water quality affect chiller performance?Yes, poor water quality can lead to issues like scaling and corrosion, which reduce efficiency. Installing filtration systems or regular water treatments can help maintain quality.
5. Why is energy efficiency important in UAE’s industrial chillers?Given the UAE’s high temperatures, energy efficiency reduces operational costs and environmental impact, making it essential for sustainable industrial practices.
#chillers#industrial chillers#Water Cooled Chillers#Domestic Water Chillers#Industrial Water Chillers#Water Chiller Manufacturers
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Chillers Market Size, Share, Growth, Analysis Forecast to 2030
Chillers Industry Overview
The global chillers market size was estimated at USD 9,928.3 million in 2023 and is projected to grow at a compound annual growth rate (CAGR) of 4.5% from 2024 to 2030.
The market is driven by the rising need for cost-effective and energy-efficient space cooling solutions in commercial and industrial sectors. This, in turn, is expected to augment the demand for the chillers market over the forecast period.
Gather more insights about the market drivers, restrains and growth of the Chillers Market
According to the U.S. Department of Agriculture (USDA), the growing population, rising consumer disposable income, and ongoing urbanization are expected to augment the growth of commercial and residential sector in the country in the forecast period. The demand for chillers in the U.S. residential sectors is driven by a combination of factors, including the need for efficient and reliable air conditioning systems. With a focus on energy efficiency, homeowners are increasingly adopting chillers equipped with advanced technologies and smart controls to ensure precise temperature regulation while minimizing environmental impact. In the commercial sector, the demand for chillers remains robust, particularly in industries such as hospitality, healthcare, and data centres.
Moreover, chillers play a pivotal role in maintaining optimal temperatures for occupant comfort, equipment reliability, and critical processes. The trend towards sustainable building practices and stringent energy efficiency standards further accelerates the adoption of chillers in both residential and commercial applications across the U.S.
The integration of advanced technologies is transforming the global market. Smart chillers, equipped with IoT capabilities, sensors, and predictive maintenance features, allow for remote monitoring and optimization. These technologies enhance overall system efficiency, reduce downtime, and contribute to cost savings. These aforementioned factors are further expected to drive the demand for market over the forecast period.
Global Chillers Market Report Segmentation
This report forecasts revenue growth at global, regional, and country levels and provides an analysis of the latest industry trends in each of the sub-segments from 2018 to 2030. For this report, Grand View Research has segmented the global chillers market report based on product, application, compressor type, and region
Product Outlook (Revenue, USD Million, 2018 - 2030)
Water-Cooled
<50kW
51-100kW
101-500kW
501-1000kW
1001-1500kW
>1501kW
Air -Cooled
<50kW
51-100kW
101-500kW
501-1000kW
1001-1500kW
>1501kW
Application Outlook (Revenue, USD Million, 2018 - 2030)
Commercial
Corporate Offices
Data Centers
Public Buildings
Mercantile & Service
Healthcare
Others
Industrial
Chemicals & Pharmaceuticals
Food & Beverage
Metal Manufacturing & Machining
Medical & Pharmaceutical
Plastics
Others
Residential
Compressor Type Outlook (Revenue, USD Million, 2018 - 2030)
Screw Chillers
Centrifugal Chillers
Absorption Chillers
Scroll Chillers
Reciprocating Chillers
Regional Outlook (Revenue, USD Million, 2018 - 2030)
North America
US
Canada
Mexico
Europe
UK
Germany
France
Italy
Spain
Russia
Asia Pacific
China
Japan
India
Australia
Thailand
South Korea
Indonesia
Malaysia
Central & South America
Brazil
Argentina
Middle East and Africa
Saudi Arabia
South Africa
UAE
Browse through Grand View Research's Advanced Interior Materials Industry Research Reports.
• The global hardfacing welding market size was estimated at USD 1.73 billion in 2023 and is forecasted to grow at a CAGR of 5.3% from 2024 to 2030.
• The global advanced phase change materials market size was valued at USD 3.01 billion in 2023 and is anticipated to reach a CAGR of 8.2% from 2024 to 2030.
Key Chillers Company Insights
The global market is highly competitive on account of the presence of global and local manufacturers. Companies are engaged in expansion through mergers & acquisitions and joint ventures. These companies offer a wide range of systems that are sold through multiple channels, including distributors, company-owned websites, retailers & their websites, and e-commerce websites. For instance, in May 2023, Trane acquired MTA, an Italian manufacturer and distributor specializing in industrial refrigeration and air conditioning equipment. This strategic acquisition is expected to enhance Trane's commercial HVAC capabilities, particularly in key markets, by incorporating MTA's process chillers and expanding the rental and services business. With manufacturing sites located in Tribano and Conselve and a workforce of approximately 500 employees, MTA has an annual production capacity of 13,500 systems.
Key Chillers Companies:
The following are the leading companies in the chillers market. These companies collectively hold the largest market share and dictate industry trends. Financials, strategy maps & products of these chillers companies are analyzed to map the supply network
Trane
Cold Shot Chillers
Tandem Chillers
Drake Refrigeration, Inc
Refra
Carrier
FRIGEL FIRENZE S.p.A.
Midea
Daikin Industries, Ltd.
Johnson Controls
Rite-Temp
General Air Products
ClimaCool Corp.
Fluid Chillers, Inc.
Multistack International Limited
Honeywell International, Inc
Recent Developments
In December 2022, Trane unveiled its latest offerings, the water-cooled XStream eXcellent GVWF and air-cooled Sintesis eXcellent GVAF chillers. These innovative chillers incorporate magnetic-bearing compressors and utilize the low global warming potential (GWP) refrigerant R1234ze. Equipped with high-speed centrifugal compressor technology, these chillers deliver larger capacities, wider operating maps to meet challenging European climate conditions, and enhanced seasonal efficiencies, all while maintaining a compact size
In April 2021, refrigeration equipment manufacturer Refra initiated production operations at its newly established facility in Vievis, located in close proximity to the capital city, Vilnius, Lithuania. Spanning an area of 12,000 square meters, the factory is situated approximately 40 kilometers northwest of Refra's headquarters in Vilnius. The expansion has resulted in the creation of employment opportunities for an additional 100 individuals
Order a free sample PDF of the Chillers Market Intelligence Study, published by Grand View Research.
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Schneider Product
Schneider Electric, a renowned multinational corporation specializing in energy management and automation solutions, offers an extensive product portfolio catering to various industries. Their range includes electrical distribution, building automation, industrial control systems, and energy management solutions.
Here are some key points about the Schneider product portfolio:
Industrial Automation and Control: Schneider Electric provides automation products tailored for industrial applications, including programmable logic controllers (PLCs), human-machine interfaces (HMIs), variable frequency drives (VFDs), motion control systems, industrial control panels, and sensors.
Energy Management: Schneider Electric offers energy management solutions and products to monitor and optimize energy consumption. This includes energy meters, power quality analyzers, smart grid systems, energy management software, and services for improving energy efficiency.
Critical Power and Cooling: Schneider Electric ensures reliable power supply and cooling in critical applications. They offer uninterruptible power supply (UPS) systems, power distribution units (PDUs), automatic transfer switches (ATS), and precision cooling systems.
Data Centers and IT Infrastructure: For data centers and IT infrastructure needs, Schneider Electric provides rack enclosures, power distribution solutions, cooling systems, modular data centers, infrastructure management software, and data center services.
Renewable Energy: Schneider Electric also offers solutions for renewable energy generation and integration, such as solar inverters, energy storage systems, electric vehicle charging infrastructure, and grid integration solutions.
To find Schneider switches UAE services, follow these steps:
Schneider Electric Official Website: Visit Schneider Electric's official website (schneider-electric.ae). Navigate to the switches category to explore their products and services offered in the UAE.
Distributor Search: Look for the "Distributor Locator" or "Find a Distributor" tool on the Schneider Electric website. Enter your location or select the UAE to find authorized distributors near you.
Contact Schneider Electric UAE: Obtain contact information for Schneider Electric's UAE branch from their website. Reach out to their customer service or sales team to inquire about their switches and related services.
Online Retailers and Suppliers: Explore reputable online platforms or websites specializing in electrical products and supplies. Ensure that the retailer is authorized to sell genuine Schneider Electric switches.
For further information about electrical services, consider visiting the official website of FES - UAE.
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Hyperscale Data Center Market - Growth, Trends, Covid-19 Impact, and Forecast (2022 - 2028)
The Global Hyperscale Data Center Market Size Was Valued At USD 96.34 Billion In 2021 And Is Projected To Reach USD 415.03 Billion By 2028, Growing At A CAGR Of 23.2% From 2022 To 2028.
Hyperscale data centers are huge business-critical facilities built to efficiently handle robust, scalable applications, and are frequently linked with big data producers like Google, Amazon, Facebook, IBM, and Microsoft. Hyperscale data centers are substantially larger than corporate data centers, and they outperform them greatly due to economies of scale and bespoke engineering. A hyperscale data center should have more than 5,000 servers and 10,000 square feet, albeit this is by no means an established definition. Hyperscale data centers are also distinguished by the amount of data, computation, and storage services they handle. According to a poll, 93 percent of hyperscale enterprises want network connectivity of 40 Gigabits per second (Gbps) or faster. According to the same survey, 51% of respondents believe that the bandwidth required to manage large amounts of data is becoming increasingly difficult. Due to increased computing, networking, memory, and storage resource demand in distributed or grid computing systems, the market is expected to grow strongly over the forecast period.
Read more:
https://introspectivemarketresearch.com/reports/hyperscale-data-center-market/
The global Hyperscale Data Center market report provides comprehensive market information, including classifications, definitions, and market analysis. This also helps with the awareness of various item specifics, the manufacturing cycle, the supply chain, and the cost structure. Along these lines, the understanding of the project's structural squares and key drivers of development is enhanced. To estimate the market size, boundaries such as import and fare, rules in various nations, inflation, legal and political variables, financial elements, and other minor aspects inside organizations have been broken down. The research examines the competitive landscape as well as the most current positions of major rivals in the Hyperscale Data Center industry.
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Key Industry Players in Hyperscale Data Center Market:
· Avago Technologies
· Dell
· Infinidat
· Arista Networks
· Google
· Facebook
· Amazon
· Baidu
· Alibaba
· Ericsson
· Cavium Inc.
· Nlyte Software
· Sandisk Corporation and other major key players.
In order to comprehend a market holistically, a variety of factors must be evaluated, including demographics, business cycles, and microeconomic requirements that pertain precisely to the market under study. In addition, the Hyperscale Data Center market study demonstrates a detailed examination of the business state, which represents creative ways for company growth, financial factors such as production value, key regions, and growth rate.
Segmentation Analysis Includes,
By Component:
· Solution
· Cooling
· Networking
· Power
· Management Software
· Service
· Installation & Integration
· Consulting
· Managed
By Application:
· BFSI
· IT and Telecommunications
· Government and Defense
· Healthcare
· Others
By Region:
· North America (U.S., Canada, Mexico)
· Europe (Germany, U.K., France, Italy, Russia, Spain, Rest of Europe)
· Asia-Pacific (China, India, Japan, Singapore, Australia, New Zealand, Rest of APAC)
· Middle East & Africa (Turkey, Saudi Arabia, Iran, UAE, Africa, Rest of MEA)
· South America (Brazil, Argentina, Rest of SA)
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· This report provides pin-point analysis for changing competitive dynamics
· It provides a forward-looking perspective on different factors driving or restraining market growth
· It provides a six-year forecast assessed on the basis of how the market is predicted to grow
· It helps in understanding the key product segments and their future
· It provides pin point analysis of changing competition dynamics and keeps you ahead of competitors
The market for hyperscale data centers expanded due to the COVID-19 outbreak. With more people working from home and more companies switching from traditional to cloud-based data storage, COVID-19 has given the cloud more advantages than ever before. This has created a profitable growth opportunity for the market. Apart from that, the demand for digital services and OTT streaming services providers significantly increased. Additionally, hyperscale data center architecture decreased the video stream latency and enhances end-to-end video streaming capabilities.
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The research report has incorporated the analysis of different factors that augment the market's growth. It constitutes trends, restraints, and drivers that transform the market in either a positive or negative manner. This section also provides the scope of different segments and applications that can potentially influence the market in the future. The detailed information is based on current trends and historic milestones.
Related Report: -
https://introspectivemarketresearch.com/reports/data-center-precision-air-conditioning-market/
https://introspectivemarketresearch.com/reports/data-center-fire-detection-and-suppression-market/
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Data Center Cooling Market Size, Share, Price Analysis, Growth Report and Industry Forecast to 2027
Market Scope
Market Research Future (MRFR) estimates the value of the Data Center Cooling Market 2020 to be USD 17 Billion by 2023. It also predicts that the market can advance at a robust rate of 14% from 2018 to 2023 (review period).
Growth Boosters and Key Barriers
Datacenter operators make extensive use of cooling systems for ensuring that the temperature stays within the acceptable level across data centers. Data centers operate throughout the day, efficiently handling massive amounts of data. The cooling system helps dissipate the heat energy within data processing, preventing the damage that can be caused due to the overheating of the equipment.
Datacenter cooling is increasingly gaining favor among data center operators owing to its eco-friendly properties, cost-effectiveness as well as energy efficiency. Data centers have increased in number across the world, in conjunction with the rising use of 4G LTE networks. Thus, with the mounting number of data centers, the demand for data center cooling solutions is also expected to soar, given the need to bring down the overall IT cost in data centers.
The advent of cloud computing along with the surge in the initiatives by government to boost the deployment of cloud technology is also working in favor of the worldwide market. For instance, the UAE government recently set up numerous projects, which include Smart Abu Dhabi and Smart Dubai. These projects are aimed at driving digital transformation as well as economic growth in the area. These types of government-backed initiatives can be a significant growth booster in the global market for data center cooling systems.
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Leading Vendors
Hitachi, Ltd. (Japan), Schneider Electric SE (France), Rittal GmbH & Co. KG (Germany), The Mitsubishi Group (Japan), Asetek A/S (Denmark), 4energy (UK), 3M (US), Degree Controls (US), The Heico Companies LLC (US), Fujitsu, Ltd. (Japan), Vertiv Co. (US), IT Aire, Inc. (US), Wakefield-Vette, Inc. (US), Cloudsite Intelligent Data Centers (US), HP Development Company L.P. (US), are the major industry participants listed in the report.
Industry Trends
The current scenario of deteriorating environment health has prompted companies to opt for sustainable cooling. The latter has the capacity to save close to 80% or more of the total cooling energy costs. To cite an instance, the North Carolina data center facility belonging to Apple functions entirely on eco-friendly, sustainable power sources for cooling the data center. This is achieved via the use of free-air cooling technique, which allows the chillers to remain shut at least 75% of the time.
Furthermore, the mounting pressure from various government agencies, the general public and environmentalists also compels the companies to take green initiatives. Thus, the heightened demand for eco-friendly solutions can propel the growth of the data center cooling systems market.
Market Segmentation
The data center cooling industry has been segregated into segments like component, cooling type, service type, organization size and verticals.
The various components covered in the study are air handling units, server cooling, precision air conditioning, economizer, chillers, and others.
The cooling types analyzed are liquid as well as air.
Depending on the service type, the market segments are professional services along with managed services.
The segments based on organization size are small & medium (SMEs) enterprises as well as large enterprises.
The verticals that deploy data center cooling system are healthcare, BFSI, IT & telecommunication, government, energy, and others.
Regional Insight
With respect to region, the data center cooling market segmentation covers North America, Asia Pacific (APAC), Europe, and the rest of the world (RoW).
Given the technological developments along with the favorable economic conditions, North America leads the global market for data center cooling. Businesses here are increasingly deploying eco-friendly and cost-effective cooling solutions, which fosters the market growth. Also, considerable interest in research and development (R&D) among private sectors to facilitate advancements in data center cooling can be a major growth inducer in the regional market.
APAC can expand at the fastest pace in the global market, with the growth primarily backed by factors like increasing ownership of smartphones as well as IoT backed consumer electronics. The soaring demand for energy efficient and affordable solutions across different industries also benefits the regional industry. Reports confirm that the number of data centers of the SME in China crossed 400,000, and the yearly power demand has touched 100 billion kWh for every data center. Moreover, the escalating demand for liquid cooling systems in data centers encourages the global vendors to make heavy investments in the Japanese market for data center cooling systems.
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UNEXPECTED INDUSTRIES THAT SHOULD HAVE A BACKUP GENERATOR
While an hour and a half without power may cause inconvenience to you as an individual, it can be detrimental to many businesses. That’s why many opt to install backup commercial generators to maintain regular operations. While you can find them in any business sector — several industries — to many people’s surprise, rely on backup generators out of necessity.
INDUSTRIES THAT REQUIRE BACKUP GENERATORS
What are some of the characteristics of a business that needs a backup generator? The telltale sign is any context where interruption can result in loss of revenue or jeopardize critical operations. As a result, in many industries, facility management requires backup generators. For example, an outage in a hospital could cause patients relying on medical equipment to experience complications. In this and similar mission-critical contexts, generators are mandatory. Another reason a business might consider backup generators is their location. A remote area facility may not have easy access to the grid or may be slow to have power returned after a disruption. Further, businesses that draw heavily on energy supplies can overwhelm the power grid. To prevent this, they use generators to offset some of their power consumption. Other companies use power generators to offer uninterrupted services to their customers. Because of these factors, generators have some surprising applications for businesses you don’t often think about. Learn more about some of these businesses that need generators and why:
1. CANNABIS FARMS
When it comes to medical marijuana production, we often imagine open-air fields and the great outdoors. That’s why many people are surprised when they hear how much energy some legal cannabis farms consume. A good majority of cannabis in commercial production never sees the light of day. Instead, industrial grow rooms cultivate the plants indoors under high-intensity lighting and strict air quality conditions.
Hemp cultivation for CBD processing also follows an equipment-intensive process. It will start with either a seed drill for planting seeds or a transplanter for seedlings. When ready to harvest, hemp farmers rely on a combine, which is the same tool used to cut and collect wheat. They may also use a CBD hemp harvester, which cuts the hemp plant without damaging its structure. Once ready for processing, several machines can be used for decortication, or separating the hemp fiber from the plant stalk.
Due to the high-demand conditions required for optimal growing, cannabis facilities go through a lot of energy. A four-plant lighting fixture can use as much electricity as 29 refrigerators. When you consider how many plants a 5,000-square-foot grow room might have, you can only begin to comprehend how much power is being used.
There are many reasons that medical marijuana grow facilities need access to commercial and industrial grade generators. The first is the show-stopping amount of power required. Sometimes, the power grid can’t supply that much energy. In those cases, the facility might rely on a diesel or natural gas generator to offset demand. Some facilities are located off the grid entirely. They will have to generate 100% of their power onsite, often with the help of a generator and sometimes using solar panels or another renewable energy source.
Another reason is the high cost of downtime in this sensitive cultivation process. Cannabis plants need 18 hours to 24 hours of light a day, depending on the strain. If a plant receives less than 18 hours of light, it can flower too early, and reduce the yield. That makes a cannabis facility, which has invested heavily in their plants, uniquely susceptible to power outages lasting several days.
While an outage of an hour or two won’t trigger premature flowering, it can prolong maturation. Marijuana’s growth is directly dependent on the amount of light it gets. Less light translates to slower growth. With high production costs to begin with, growers need to minimize the darkness their plants receive.
This problem is similar to the high costs of downtime in any production industry. Any hour of planned production that gets interrupted by an outage leads to money evaporating. Without a generator, a facility is paying for storage space and labor that aren’t contributing to production.
2. OBSERVATORIES
Observatories are crucial for experiments and data collection projects in the scientific community. Power outages can interrupt this precise work and waste investment dollars. Like cannabis farms, observatories need an immense amount of power. Most observatories have a variety of computers, lights, communications systems and IT servers housed on-premises. Some also have residential facilities for staff and visiting astronomers as well as administrative and technical offices.
They also have several powerful telescopes running, which take up a vast majority of the power. A study of the European Southern Observatory (ESO) in Chile revealed that 67% of all the energy used went to the main telescope area, with another 9% going to another telescope. The primary power demand for telescopes is the chillers and pump systems, which cool the telescopes. They also use intense air conditioning units to keep them cool during the heat of the day. Like data centers, observatories also draw power to an uninterruptible power supply (UPS), which guarantees the telescopes will remain operational without interruption if an outage occurs.
By necessity, observatories are located far from populated areas, which create light pollution. As a result, most are far from the power grid. Most observatories only have the option for onsite power generation. In ESO, the facility uses a multi-fuel turbine that generates electricity from diesel and liquid petroleum gas (LPG). They use three backup diesel generators to keep power running while the turbine receives maintenance.
Tags: Diesel generator maintenance, diesel generator rental uae, rental generator in dubai
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How upcoming missions to Mars will help predict its wild dust storms
It started with a spring breeze. The Opportunity rover watched with its robotic eyes as the wind blowing through Perseverance Valley kicked puffs of rusty Mars dust into the air. In more than 14 Earth years of exploring the Red Planet, the rover had seen plenty of this kind of weather.
But the dust grew thicker. Small flecks swirled like wildfire smoke through the atmosphere, turning sun-filled midday into dusk, then night. Within a week, the dust storm spanned more than twice the area of the contiguous United States and eventually encircled the whole planet, allowing just 5 percent of the normal amount of light to reach Opportunity’s solar panels. The rover went quiet.
“It got so bad so quickly, we didn’t even have time to react,” says Keri Bean of NASA’s Jet Propulsion Laboratory in Pasadena, Calif. Bean had joined Opportunity’s rover-operating team just before that May 2018 storm.
Dust storms like that one, which snuffed out Opportunity for good, are the most dramatic and least predictable events on the Red Planet (SN: 3/16/19, p. 7). Such storms can make the nail-biting process of landing on Mars even more dangerous and could certainly make life difficult for future human explorers.
Despite almost 50 years of study, scientists are missing some key data that would help explain how dust gets kicked into the air to form planet-wide storms and what keeps it circulating for weeks or months at a time.
“We just do not understand how dust storms form on Mars,” says planetary meteorologist Scott Guzewich of NASA’s Goddard Space Flight Center in Greenbelt, Md. History has shown that certain regions and seasons are more prone to dust than others. “Other than that, we’re … blind.”
Mars missions set to launch this summer, from the United States, China and the United Arab Emirates, will help solve that pressing mystery. NASA’s new rover, Perseverance, will carry a suite of weather sensors called MEDA, for Mars Environmental Dynamics Analyzer. Those sensors will build on decades of Mars exploration and fill in missing puzzle pieces.
“Predicting dust is the ultimate goal” for MEDA, says planetary scientist Germán Martínez of the Lunar and Planetary Institute in Houston. The data MEDA will collect will be “the most substantial contribution to this topic so far.”
Dust, dust everywhere
Dust is as important to weather on Mars as water is on Earth. With no oceans, scant water vapor and a thin atmosphere, Martian weather can be monotonously calm for about half the Martian year, which lasts close to 687 Earth days. But when the Red Planet’s orbit brings it closer to the sun, dust storm season begins.
In the 10-month dusty season, which corresponds to spring and summer in the southern hemisphere, extra sunlight warms the atmosphere. That warmth generates strong winds as air moves from warm to cool regions. Those winds lift more dust, which absorbs sunlight and warms the atmosphere, generating still stronger winds, which lift even more dust.
There is a season
Mars’ dusty season lasts from the start of southern spring to the end of southern summer (thicker blue line), when the Red Planet orbits closest to the sun. The extra sunlight warms the atmosphere, setting off a feedback loop that can lift dust into the sky and send it circulating around the globe.
Universal Images Group North America LLC/Alamy Stock Photo
Universal Images Group North America LLC/Alamy Stock Photo
The storms come in a range of sizes: Local storms can cover an area about the size of Alaska and last up to three Martian days (each of which lasts about 24.5 hours); global storms can engulf the planet for months. The storm that defeated Opportunity raged from the end of May through late July. Such global storms probably result when several smaller storms merge.
Global dust storms have affected Mars exploration since the arrival of the first long-term robotic visitor in 1971, when NASA’s Mariner 9 orbiter found the planet’s surface entirely obscured. Opportunity and its twin rover, Spirit, both survived a global dust storm in 2007, yet a large regional dust storm ended the Phoenix lander’s mission in 2008.
There has never been a Mars mission that didn’t worry about dust.
A farmer’s almanac
Luckily, Mariner 9 was an orbiter, with no plans to land. It just had to wait for the skies to clear to start snapping pictures of the Martian surface. But the same 1971 storm is probably to blame for vanquishing two Soviet landers that arrived at almost the same time.
Spacecraft that must land to do their work can’t just wait for better timing. Launch windows for missions between Earth and Mars open only every 26 months or so. Engineers who design landing systems need to know what conditions a spacecraft will face when it gets there, says Allen Chen of the Jet Propulsion Lab, who leads the entry, descent and landing for Perseverance.
The most important factor is the density of the atmosphere. Even though Mars’ atmosphere exerts just 1 percent of the pressure of Earth’s on the planet’s surface, both the thin Martian air and the wind blowing through it slow down the spacecraft and affect where it lands, Chen says.
Perseverance will take pictures of the ground while parachuting through the atmosphere and match the images to an onboard map made with images from NASA’s Mars Reconnaissance Orbiter. Based on those details, an in-flight navigation system will steer the rover to a safe landing spot, helping the rover touch down within an area 25 kilometers wide — the most precise Mars landing ever.
“But that’s dependent on being able to see the ground,” Chen says, without dust obscuring the view.
To land a rover, engineers like Chen rely on forecasts that use the past to tell the future — similar to weather forecasts on Earth, but with less data. Atmospheric scientist Bruce Cantor of Malin Space Science Systems in San Diego, a self-described Mars weatherman, put out a Mars weather report every week until September 2019. His forecasts are based on statistics and historical data, mostly taken from orbit. “It’s almost like a farmer’s almanac in my head,” he says.
Cantor’s forecasts for Mars landings since 1999 have been “pretty accurate,” he says, and he boasts that he predicted the storm that ended the Phoenix mission to within three days. More accuracy wouldn’t have saved Phoenix, he says. The lander’s batteries were already low from low winter sunlight levels and the buildup of dust on the solar panels. “It was just a matter of what storm was going to be the mission-ending one,” he says.
He foresees clear skies for Perseverance’s touchdown in February 2021. Based on the season and weather patterns in the past, the probability of a dust storm hitting within 1,000 kilometers of the center of Perseverance’s landing area is less than 2 percent, Cantor and colleagues reported in the journal Icarus in March 2019.
But just in case, Chen’s team trained the navigation system to “deal with it being pretty darn dusty,” Chen says.
A constellation of weather stations
As Mars missions get more complex, and especially as NASA and other groups contemplate sending human explorers, being able to prepare for dust storms takes on extra urgency.
“Someday, somebody is going to go to Mars, and they’re going to want to know when and where storms occur,” Cantor says. “That’s when this stuff becomes really important.”
Cantor would know. Well over a decade ago, while testing a different rover system in Southern California, he jumped into a 2-meter-tall dust devil just to see what it would feel like. “Not one of my smartest moves,” he says. He wasn’t injured, but “it did not feel good. It felt like getting sandblasted.”
Martian astronauts would be protected by more than shorts and a T-shirt, but dust could easily invade human habitats and clog air filters — or damage astronauts’ lungs if they breathe it in. The dust may even carry poisonous and carcinogenic materials that could make astronauts ill over the course of a mission.
Astronauts will need to know when to stay inside. Part of the problem in predicting storms is a sheer lack of data. For Earth’s weather, meteorologists use thousands of ground-based weather stations, plus data from satellites, balloons and airplanes. Mars has only six active satellites, run by NASA and the European and Indian space agencies. And just two sets of weather instruments report from Mars’ surface: one on the Curiosity rover, which has been collecting data since 2012 (SN: 5/2/15, p. 24), and a nearly identical set that arrived with the InSight lander in 2018.
Collecting dust
More than seven Earth years in the Red Planet’s dusty atmosphere has taken its toll on the Curiosity rover, shown in “selfies” the rover took in October 2012 (the 84th Martian day of its mission, left) and in February 2020 (Martian day 2,687, right).
JPL-Caltech/NASA, Malin Space Science Systems
JPL-Caltech/NASA, Malin Space Science Systems
But those two spacecraft are practically neighbors, a big weakness for understanding the whole planet. “It’d be like having one of your weather stations in D.C. and the other in Buffalo,” Guzewich says.
Perseverance will help fill in the gaps. So might China’s first Mars rover, Tianwen-1, set to launch in July with an instrument to measure air temperature, pressure and wind. The Russian and European ExoMars mission, scheduled to launch in 2022, includes a lander called Kazachok equipped with meteorology and dust sensors (SN Online: 3/12/20).
From the air, the UAE’s Emirates Mars Mission, known as Hope, will observe weather, including storms, and how the atmosphere interacts with the ground. Over one Martian year in orbit, Hope will help build a global picture of how the atmosphere changes day to day and between the seasons.
Just having a few more weather stations will be a big boost, says José A. Rodríguez Manfredi of the Center for Astrobiology in Madrid, principal investigator for MEDA, the weather sensors on Perseverance. “We will have a mini network working on Mars in a few years.”
But four or five weather stations on the ground probably won’t be enough. To reliably predict dust storms, what Mars scientists need is a global network collecting data all the time.
To cut down on the cost of such a network, Guzewich suggests figuring out which measurements “would give us the most bang for our buck.” For Earth, NASA and other agencies use a type of study called an Observing System Simulation Experiment to figure out which variables are most important for predicting the weather. Satellites are then designed to focus on those most valuable observations. Such a study has never been done for Mars, but the only obstacle is funding, Guzewich says.
“Mars atmospheric scientists have been clamoring” for such experiments, he says. “We’re not going to reproduce Earth’s observing network before humans go to Mars. It’s not going to happen…. But maybe we could do something that is financially and technologically reasonable that really does make a difference and gets us to the point where we can predict the future a couple days in advance.”
China’s space agency plans to launch its first Mars mission, called Tianwen-1, in July. Its rover (illustrated atop the lander) will measure air temperature, pressure and wind, among other things.Xinhua
Blowing in the wind
Mars forecasts also suffer from a lack of fundamental information, Martínez says. How hard does the wind have to blow to lift the dust? And what does the dust do once it’s airborne?
This is where Perseverance will shine. The rover will make the best direct measurements yet of wind speed and direction on Mars, especially the vertical wind that lifts dust upward.
For a long time, scientists struggled to understand how dust was lifted into the air at all. “It seemed like it couldn’t be possible,” Guzewich says. “The atmosphere is so thin, a single particle of dust or sand is so heavy, it just shouldn’t work.” Observations and experiments over the last 20 years suggest that once sand grains start bouncing along the surface, they can knock into other grains and knock smaller particles upward. But it’s still not possible to tell which of those bouncing grains will lead to a storm — or which of those storms will go global.
Mars climatologists have tried to make detailed wind measurements for decades, Martínez says, but have hit several stretches of bad luck. Only five surface missions — the Viking 1 and 2 landers in 1976, the Pathfinder lander in 1997 and the ongoing Curiosity and InSight missions — have provided useful data on wind speed and direction near the surface. And even those have had mixed results.
NASA’s InSight lander, shown here in a mosaic of selfies the spacecraft took, carries a set of weather sensors called TWINS, or Temperature and Wind for InSight. The lander is one of just two weather stations on the Martian surface. Mars atmospheric scientists say they need more to predict dangerous dust storms.JPL-Caltech/NASA
“Arguably, the best wind record on Mars is still the one from the Vikings, 40 years ago,” Martínez says. Curiosity was supposed to take direct wind measurements in all directions with a pair of electrically heated booms that jutted away from the rover’s neck. “We had great expectations,” Martínez says.
But photos the rover took of itself showed that one boom was damaged as the rover landed, and out of commission. For the first 1,490 Martian days of Curiosity’s mission, the rover could take measurements only when the wind was blowing head on. Then, in October 2016, the second boom broke. In April, researchers suggested a way to hack Curiosity’s temperature sensors to get wind data, but there’s no plan to use that hack at the moment, Guzewich says.
That leaves InSight, but its wind readings are muddled by other parts of the lander getting in the way of airflow. The readings are still useful, but the MEDA team hopes to do better.
Taking lessons from InSight and Curiosity, Perseverance’s MEDA will have more wind sensors that reach farther from the rover’s body. The sensors will be protected by a shield until after the rover has landed safely.
“We are very excited,” Martínez says. “The vertical wind has never been measured before on Mars. We’re going to do that.”
Measuring wind speeds will help scientists determine how hard the wind must blow to kick up dust, the first step in triggering a dust storm.
That figure has personal resonance for Bean, the former Opportunity rover operator. Her first shift was exactly two weeks before the mission-ending global dust storm. She told the rover to use its arm to brush the surface of a rock.
“My coworkers blamed me for starting a whole butterfly effect,” she says. “You brushed the surface,” they joked, “the dust went up, you started the whole dust storm.”
In its end-of-mission report, the Opportunity team admits it will never really know what ended Opportunity’s nearly 15-year run. One possibility is that the dust grew too thick on the solar panels for gentle wind in the calm season to blow the dust off.
One potential fix would be to design future rovers to vibrate their solar panels fast enough to make dust skitter off, Bean says. Once humans are on the planet, they could just clear dust with their arms.
A week or so before Opportunity was officially declared lost, Bean decided to memorialize the rover. “I’d always liked tattoos, but nothing ever spoke to me,” she says. In college, she had studied Mars’ atmospheric opacity — the amount of light that can penetrate an atmosphere’s dust, represented by the Greek letter τ. So Bean got a tattoo on her arm of the last measurement Opportunity sent to Earth: “τ=10.8.” That stands for a night-dark sky in the middle of the day.
.image-mobile { display: none; } @media (max-width: 400px) { .image-mobile { display: block; } .image-desktop { display: none; } } from Tips By Frank https://www.sciencenews.org/article/perseverance-mars-weather-dust-storms
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Nuclear Robotics Industry Growth, Competitive Analysis, Future Prospects 2018
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Global Scalp Cooling Systems Market 2019 | Manufacturers In-Depth Analysis Report to 2024
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Scalp cooling is done by applying cold temperatures to your scalp during chemotherapy treatment for cancer.
The global Scalp Cooling Systems market is valued at xx million USD in 2018 and is expected to reach xx million USD by the end of 2024, growing at a CAGR of xx% between 2019 and 2024.
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Market Segment by Companies, this report covers
Paxman
Penguin Cold Caps
Chemotherapy Cold Caps
Dignitana
Medline Industries
Market Segment by Regions, regional analysis covers
North America (United States, Canada and Mexico)
Europe (Germany, France, UK, Russia and Italy)
Asia-Pacific (China, Japan, Korea, India and Southeast Asia)
South America (Brazil, Argentina, Colombia)
Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa)
Market Segment by Type, covers
Chemotherapy Induced Hair Loss
Neonatal Encephalopathy
Cardiac Arrest
Others
Market Segment by Applications, can be divided into
Hospitals
Clinics
Ambulatory Surgical Centers
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New Study: 2024-2030 Chillers Medical Devices Market Trend and Forecast Report
Chillers Industry Overview
The global chillers market size was estimated at USD 9,928.3 million in 2023 and is projected to grow at a compound annual growth rate (CAGR) of 4.5% from 2024 to 2030.
The market is driven by the rising need for cost-effective and energy-efficient space cooling solutions in commercial and industrial sectors. This, in turn, is expected to augment the demand for the chillers market over the forecast period.
Gather more insights about the market drivers, restrains and growth of the Chillers Market
According to the U.S. Department of Agriculture (USDA), the growing population, rising consumer disposable income, and ongoing urbanization are expected to augment the growth of commercial and residential sector in the country in the forecast period. The demand for chillers in the U.S. residential sectors is driven by a combination of factors, including the need for efficient and reliable air conditioning systems. With a focus on energy efficiency, homeowners are increasingly adopting chillers equipped with advanced technologies and smart controls to ensure precise temperature regulation while minimizing environmental impact. In the commercial sector, the demand for chillers remains robust, particularly in industries such as hospitality, healthcare, and data centres.
Moreover, chillers play a pivotal role in maintaining optimal temperatures for occupant comfort, equipment reliability, and critical processes. The trend towards sustainable building practices and stringent energy efficiency standards further accelerates the adoption of chillers in both residential and commercial applications across the U.S.
The integration of advanced technologies is transforming the global market. Smart chillers, equipped with IoT capabilities, sensors, and predictive maintenance features, allow for remote monitoring and optimization. These technologies enhance overall system efficiency, reduce downtime, and contribute to cost savings. These aforementioned factors are further expected to drive the demand for market over the forecast period.
Global Chillers Market Report Segmentation
This report forecasts revenue growth at global, regional, and country levels and provides an analysis of the latest industry trends in each of the sub-segments from 2018 to 2030. For this report, Grand View Research has segmented the global chillers market report based on product, application, compressor type, and region
Product Outlook (Revenue, USD Million, 2018 - 2030)
Water-Cooled
<50kW
51-100kW
101-500kW
501-1000kW
1001-1500kW
>1501kW
Air -Cooled
<50kW
51-100kW
101-500kW
501-1000kW
1001-1500kW
>1501kW
Application Outlook (Revenue, USD Million, 2018 - 2030)
Commercial
Corporate Offices
Data Centers
Public Buildings
Mercantile & Service
Healthcare
Others
Industrial
Chemicals & Pharmaceuticals
Food & Beverage
Metal Manufacturing & Machining
Medical & Pharmaceutical
Plastics
Others
Residential
Compressor Type Outlook (Revenue, USD Million, 2018 - 2030)
Screw Chillers
Centrifugal Chillers
Absorption Chillers
Scroll Chillers
Reciprocating Chillers
Regional Outlook (Revenue, USD Million, 2018 - 2030)
North America
US
Canada
Mexico
Europe
UK
Germany
France
Italy
Spain
Russia
Asia Pacific
China
Japan
India
Australia
Thailand
South Korea
Indonesia
Malaysia
Central & South America
Brazil
Argentina
Middle East and Africa
Saudi Arabia
South Africa
UAE
Browse through Grand View Research's Advanced Interior Materials Industry Research Reports.
• The global hardfacing welding market size was estimated at USD 1.73 billion in 2023 and is forecasted to grow at a CAGR of 5.3% from 2024 to 2030.
• The global advanced phase change materials market size was valued at USD 3.01 billion in 2023 and is anticipated to reach a CAGR of 8.2% from 2024 to 2030.
Key Chillers Company Insights
The global market is highly competitive on account of the presence of global and local manufacturers. Companies are engaged in expansion through mergers & acquisitions and joint ventures. These companies offer a wide range of systems that are sold through multiple channels, including distributors, company-owned websites, retailers & their websites, and e-commerce websites. For instance, in May 2023, Trane acquired MTA, an Italian manufacturer and distributor specializing in industrial refrigeration and air conditioning equipment. This strategic acquisition is expected to enhance Trane's commercial HVAC capabilities, particularly in key markets, by incorporating MTA's process chillers and expanding the rental and services business. With manufacturing sites located in Tribano and Conselve and a workforce of approximately 500 employees, MTA has an annual production capacity of 13,500 systems.
Key Chillers Companies:
The following are the leading companies in the chillers market. These companies collectively hold the largest market share and dictate industry trends. Financials, strategy maps & products of these chillers companies are analyzed to map the supply network
Trane
Cold Shot Chillers
Tandem Chillers
Drake Refrigeration, Inc
Refra
Carrier
FRIGEL FIRENZE S.p.A.
Midea
Daikin Industries, Ltd.
Johnson Controls
Rite-Temp
General Air Products
ClimaCool Corp.
Fluid Chillers, Inc.
Multistack International Limited
Honeywell International, Inc
Recent Developments
In December 2022, Trane unveiled its latest offerings, the water-cooled XStream eXcellent GVWF and air-cooled Sintesis eXcellent GVAF chillers. These innovative chillers incorporate magnetic-bearing compressors and utilize the low global warming potential (GWP) refrigerant R1234ze. Equipped with high-speed centrifugal compressor technology, these chillers deliver larger capacities, wider operating maps to meet challenging European climate conditions, and enhanced seasonal efficiencies, all while maintaining a compact size
In April 2021, refrigeration equipment manufacturer Refra initiated production operations at its newly established facility in Vievis, located in close proximity to the capital city, Vilnius, Lithuania. Spanning an area of 12,000 square meters, the factory is situated approximately 40 kilometers northwest of Refra's headquarters in Vilnius. The expansion has resulted in the creation of employment opportunities for an additional 100 individuals
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Global Micro-Mobile Data Center Market 2019 | Manufacturers In-Depth Analysis Report to 2024
The latest trending report Global Micro-Mobile Data Center Market 2019-2024 added by DecisionDatabases.com
The granular level configuration or layout of micro data centers is termed as micro-mobile data center. It is popular as plug and play unit, which has all the devices of a conventional data center. Emergence of a micro-mobile data center offers an enterprise compact facility loaded with features including board cooling, uninterrupted UPS, storage systems and others. Furthermore, these data centers can not only be deployed outdoors or indoors but also in the rough terrain. In addition, the self propelled capacity of micro mobile data center market helps in easy navigation. In simple terms, the micro modular blueprint also aids in lowering the physical footprint as well as energy consumption by the existing brick and mortar type.
The global Micro-Mobile Data Center market is valued at 2700 million USD in 2018 and is expected to reach 11300 million USD by the end of 2024, growing at a CAGR of 27.0% between 2019 and 2024.
This report studies the Micro-Mobile Data Center market status and outlook of Global and major regions, from angles of players, countries, product types and end industries; this report analyzes the top players in global market, and splits the Micro-Mobile Data Center market by product type and applications/end industries.
Browse the complete report and table of contents @ https://www.decisiondatabases.com/ip/21591-micro-mobile-data-center-market-analysis-report
Market Segment by Companies, this report covers
· Schneider Electric
· Hewlett
· Rittal
· Vertiv
· IBM
· Eaton
· Delta Power Solutions
· Orbis
· Vapor IO
· Canovate
· IDC
· Altron
· Cannon Technologies
· Huawei
· Sicon Chat Union Electric
· KSTAR
Market Segment by Regions, regional analysis covers
· North America (United States, Canada and Mexico)
· Europe (Germany, France, UK, Russia and Italy)
· Asia-Pacific (China, Japan, Korea, India and Southeast Asia)
· South America (Brazil, Argentina, Colombia)
· Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa)
Market Segment by Type, covers
· Up to 25 RU
· 25–40 RU
· Above 40 RU
Market Segment by Applications, can be divided into
· Banking, Financial Services, and Insurance (BFSI)
· IT and telecom
· Government and defense
· Energy
· Manufacturing
· Others
Download Free Sample Report of Global Micro-Mobile Data Center Market @ https://www.decisiondatabases.com/contact/download-sample-21591
There are 15 Chapters to deeply display the Global Micro-Mobile Data Center market.
1 Micro-Mobile Data Center Market Overview
2 Micro-Mobile Data Center Manufacturers Profiles
3 Global Micro-Mobile Data Center Sales, Revenue, Market Share and Competition by Manufacturer (2016-2017)
4 Global Micro-Mobile Data Center Market Analysis by Regions
5 North America Micro-Mobile Data Center by Countries
6 Europe Micro-Mobile Data Center by Countries
7 Asia-Pacific Micro-Mobile Data Center by Countries
8 South America Micro-Mobile Data Center by Countries
9 Middle East and Africa Micro-Mobile Data Center by Countries
10 Global Micro-Mobile Data Center Market Segment by Type
11 Global Micro-Mobile Data Center Market Segment by Application
12 Micro-Mobile Data Center Market Forecast (2018-2023)
13 Sales Channel, Distributors, Traders and Dealers
14 Research Findings and Conclusion
15 Appendix
Purchase the complete Global Micro-Mobile Data Center Market Research Report @ https://www.decisiondatabases.com/contact/buy-now-21591
Other Reports by DecisionDatabases.com:
Global Hyperscale Data Center Market 2018 by Manufacturers, Countries, Type and Application, Forecast to 2023 @
https://www.decisiondatabases.com/ip/35417-hyperscale-data-center-market-analysis-report
Global Data Centre (Data Centers) Market 2018 by Manufacturers, Regions, Type and Application, Forecast to 2023 @
https://www.decisiondatabases.com/ip/27444-data-centre-data-centers-market-analysis-report
Global Modular Data Centers Market by Manufacturers, Countries, Type and Application, Forecast to 2023 @ https://www.decisiondatabases.com/ip/24981-modular-data-centers-market-analysis-report
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#Micro-Mobile Data Center Market#Micro-Mobile Data Center Market Report#Micro-Mobile Data Center Industry Report#Micro-Mobile Data Center Market Analysis#Micro-Mobile Data Center Market Growth#Micro-Mobile Data Center Market Trends#Micro-Mobile Data Center Market Outlook#Global Micro-Mobile Data Center Industry Report
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Data Center Cooling Market Size Analysis, Growth Drivers, Share, and Business Opportunities 2021 to 2027
Market Scope
Market Research Future (MRFR) estimates the value of the Data Center Cooling Market 2020 to be USD 17 Billion by 2023. It also predicts that the market can advance at a robust rate of 14% from 2018 to 2023 (review period).
Growth Boosters and Key Barriers
Datacenter operators make extensive use of cooling systems for ensuring that the temperature stays within the acceptable level across data centers. Data centers operate throughout the day, efficiently handling massive amounts of data. The cooling system helps dissipate the heat energy within data processing, preventing the damage that can be caused due to the overheating of the equipment.
Datacenter cooling is increasingly gaining favor among data center operators owing to its eco-friendly properties, cost-effectiveness as well as energy efficiency. Data centers have increased in number across the world, in conjunction with the rising use of 4G LTE networks. Thus, with the mounting number of data centers, the demand for data center cooling solutions is also expected to soar, given the need to bring down the overall IT cost in data centers
The advent of cloud computing along with the surge in the initiatives by government to boost the deployment of cloud technology is also working in favor of the worldwide market. For instance, the UAE government recently set up numerous projects, which include Smart Abu Dhabi and Smart Dubai. These projects are aimed at driving digital transformation as well as economic growth in the area. These types of government-backed initiatives can be a significant growth booster in the global market for data center cooling systems.
Request a Free Sample @ https://www.marketresearchfuture.com/sample_request/1913
Leading Vendors
Hitachi, Ltd. (Japan), Schneider Electric SE (France), Rittal GmbH & Co. KG (Germany), The Mitsubishi Group (Japan), Asetek A/S (Denmark), 4energy (UK), 3M (US), Degree Controls (US), The Heico Companies LLC (US), Fujitsu, Ltd. (Japan), Vertiv Co. (US), IT Aire, Inc. (US), Wakefield-Vette, Inc. (US), Cloudsite Intelligent Data Centers (US), HP Development Company L.P. (US), are the major industry participants listed in the report.
Industry Trends
The current scenario of deteriorating environment health has prompted companies to opt for sustainable cooling. The latter has the capacity to save close to 80% or more of the total cooling energy costs. To cite an instance, the North Carolina data center facility belonging to Apple functions entirely on eco-friendly, sustainable power sources for cooling the data center. This is achieved via the use of free-air cooling technique, which allows the chillers to remain shut at least 75% of the time.
Furthermore, the mounting pressure from various government agencies, the general public and environmentalists also compels the companies to take green initiatives. Thus, the heightened demand for eco-friendly solutions can propel the growth of the data center cooling systems market.
Market Segmentation
The data center cooling industry has been segregated into segments like component, cooling type, service type, organization size and verticals.
The various components covered in the study are air handling units, server cooling, precision air conditioning, economizer, chillers, and others.
The cooling types analyzed are liquid as well as air.
Depending on the service type, the market segments are professional services along with managed services.
The segments based on organization size are small & medium (SMEs) enterprises as well as large enterprises.
The verticals that deploy data center cooling system are healthcare, BFSI, IT & telecommunication, government, energy, and others.
Browse Full Report Details @ https://www.marketresearchfuture.com/reports/data-center-cooling-market-1913
Regional Insight
With respect to region, the data center cooling market segmentation covers North America, Asia Pacific (APAC), Europe, and the rest of the world (RoW).
Given the technological developments along with the favorable economic conditions, North America leads the global market for data center cooling. Businesses here are increasingly deploying eco-friendly and cost-effective cooling solutions, which fosters the market growth. Also, considerable interest in research and development (R&D) among private sectors to facilitate advancements in data center cooling can be a major growth inducer in the regional market.
APAC can expand at the fastest pace in the global market, with the growth primarily backed by factors like increasing ownership of smartphones as well as IoT backed consumer electronics. The soaring demand for energy efficient and affordable solutions across different industries also benefits the regional industry. Reports confirm that the number of data centers of the SME in China crossed 400,000, and the yearly power demand has touched 100 billion kWh for every data center. Moreover, the escalating demand for liquid cooling systems in data centers encourages the global vendors to make heavy investments in the Japanese market for data center cooling systems.
About Market Research Future:
At Market Research Future (MRFR), we enable our clients to unravel the complexity of various industries through our Cooked Research Report (CRR), Half-Cooked Research Reports (HCRR), Raw Research Reports (3R), Continuous-Feed Research (CFR), and Market Research & Consulting Services.
MRFR team have supreme objective to provide the optimum quality market research and intelligence services to our clients. Our market research studies by Solutions, Application, Logistics and market players for global, regional, and country level market segments, enable our clients to see more, know more, and do more, which help to answer all their most important questions.
Contact
Market Research Future
Office No. 528, Amanora Chambers
Magarpatta Road, Hadapsar,
Pune – 411028
Maharashtra, India
+1 646 845 9312
Email: [email protected]
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Data Center Cooling Market Global Size Overview, Growth Drivers, Industry Share and Forecast to 2027
Market Scope
Market Research Future (MRFR) estimates the value of the Data Center Cooling Market 2020 to be USD 17 Billion by 2023. It also predicts that the market can advance at a robust rate of 14% from 2018 to 2023 (review period).
Growth Boosters and Key Barriers
Datacenter operators make extensive use of cooling systems for ensuring that the temperature stays within the acceptable level across data centers. Data centers operate throughout the day, efficiently handling massive amounts of data. The cooling system helps dissipate the heat energy within data processing, preventing the damage that can be caused due to the overheating of the equipment.
Datacenter cooling is increasingly gaining favor among data center operators owing to its eco-friendly properties, cost-effectiveness as well as energy efficiency. Data centers have increased in number across the world, in conjunction with the rising use of 4G LTE networks. Thus, with the mounting number of data centers, the demand for data center cooling solutions is also expected to soar, given the need to bring down the overall IT cost in data centers.
The advent of cloud computing along with the surge in the initiatives by government to boost the deployment of cloud technology is also working in favor of the worldwide market. For instance, the UAE government recently set up numerous projects, which include Smart Abu Dhabi and Smart Dubai. These projects are aimed at driving digital transformation as well as economic growth in the area. These types of government-backed initiatives can be a significant growth booster in the global market for data center cooling systems.
Request a Free Sample @ https://www.marketresearchfuture.com/sample_request/1913
Leading Vendors
Hitachi, Ltd. (Japan), Schneider Electric SE (France), Rittal GmbH & Co. KG (Germany), The Mitsubishi Group (Japan), Asetek A/S (Denmark), 4energy (UK), 3M (US), Degree Controls (US), The Heico Companies LLC (US), Fujitsu, Ltd. (Japan), Vertiv Co. (US), IT Aire, Inc. (US), Wakefield-Vette, Inc. (US), Cloudsite Intelligent Data Centers (US), HP Development Company L.P. (US), are the major industry participants listed in the report.
Industry Trends
The current scenario of deteriorating environment health has prompted companies to opt for sustainable cooling. The latter has the capacity to save close to 80% or more of the total cooling energy costs. To cite an instance, the North Carolina data center facility belonging to Apple functions entirely on eco-friendly, sustainable power sources for cooling the data center. This is achieved via the use of free-air cooling technique, which allows the chillers to remain shut at least 75% of the time.
Furthermore, the mounting pressure from various government agencies, the general public and environmentalists also compels the companies to take green initiatives. Thus, the heightened demand for eco-friendly solutions can propel the growth of the data center cooling systems market.
Market Segmentation
The data center cooling industry has been segregated into segments like component, cooling type, service type, organization size and verticals.
The various components covered in the study are air handling units, server cooling, precision air conditioning, economizer, chillers, and others.
The cooling types analyzed are liquid as well as air.
Depending on the service type, the market segments are professional services along with managed services.
The segments based on organization size are small & medium (SMEs) enterprises as well as large enterprises.
The verticals that deploy data center cooling system are healthcare, BFSI, IT & telecommunication, government, energy, and others.
Browse Full Report Details @ https://www.marketresearchfuture.com/reports/data-center-cooling-market-1913
TABLE OF CONTENTS
1 Executive Summary
2 Scope Of The Report
2.1 Market Definition
2.2 Scope Of The Study
2.2.1 Research Objectives
2.2.2 Assumptions & Limitations
2.3 Markets Structure
3 Market Research Methodology
....
13. Company Profiles
13.1 Fujitsu, Ltd.
13.1.1 Company Overview
13.1.2 Product/Business Segment Overview
13.1.3 Financial Updates
13.1.4 Key Developments
13.2 Asetek A/S
13.3 The Mitsubishi Group
13.4 Degree Controls
13.5 Schneider Electric Se
13.6 The Heico Companies Llc
13.7 Rittal Gmbh & Co. Kg
...
Regional Insight
With respect to region, the data center cooling market segmentation covers North America, Asia Pacific (APAC), Europe, and the rest of the world (RoW).
Given the technological developments along with the favorable economic conditions, North America leads the global market for data center cooling. Businesses here are increasingly deploying eco-friendly and cost-effective cooling solutions, which fosters the market growth. Also, considerable interest in research and development (R&D) among private sectors to facilitate advancements in data center cooling can be a major growth inducer in the regional market.
APAC can expand at the fastest pace in the global market, with the growth primarily backed by factors like increasing ownership of smartphones as well as IoT backed consumer electronics. The soaring demand for energy efficient and affordable solutions across different industries also benefits the regional industry. Reports confirm that the number of data centers of the SME in China crossed 400,000, and the yearly power demand has touched 100 billion kWh for every data center. Moreover, the escalating demand for liquid cooling systems in data centers encourages the global vendors to make heavy investments in the Japanese market for data center cooling systems.
About Market Research Future:
At Market Research Future (MRFR), we enable our clients to unravel the complexity of various industries through our Cooked Research Report (CRR), Half-Cooked Research Reports (HCRR), Raw Research Reports (3R), Continuous-Feed Research (CFR), and Market Research & Consulting Services.
MRFR team have supreme objective to provide the optimum quality market research and intelligence services to our clients. Our market research studies by Solutions, Application, Logistics and market players for global, regional, and country level market segments, enable our clients to see more, know more, and do more, which help to answer all their most important questions.
Contact
Market Research Future
Office No. 528, Amanora Chambers
Magarpatta Road, Hadapsar,
Pune – 411028
Maharashtra, India
+1 646 845 9312
Email: [email protected]
0 notes