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Middle East and Africa Onshore Wind Power Market | BIS Research
The global shift towards renewable energy sources has brought about significant advancements in the onshore wind power sector. While traditionally dominated by Europe and North America, the Middle East and Africa are emerging as promising regions for onshore wind power development. This blog will delve into the dynamics, opportunities, and challenges shaping the onshore wind power market in the Middle East and Africa.
Overview of Onshore Wind Power in the Middle East and Africa
a. Current Scenario:The Middle East and Africa have traditionally relied on fossil fuels for energy production, but the growing awareness of environmental issues and the need for sustainable energy sources have fueled interest in onshore wind power.
b. Market Size and Growth: The onshore wind power market in the Middle East and Africa is witnessing rapid growth, driven by government initiatives, increasing energy demand, and the abundance of wind resources in certain regions. The market size is expected to expand significantly in the coming years.
Market Segmentation:
Segmentation 1: by End User
Segmentation 2: by Grid Connectivity
Segmentation 3: by Wind Capacity
Segmentation 4: by Power Output
Key Drivers and Opportunities:
a. Government Initiatives:
Governments across the region are implementing policies and incentives to promote renewable energy. Subsidies, feed-in tariffs, and favorable regulatory frameworks are encouraging investments in onshore wind power projects. b. Abundant Wind Resources:
Certain regions in the Middle East and Africa boast exceptional wind resources, making them ideal for onshore wind power installations. Countries like Egypt, Morocco, and South Africa are capitalizing on their wind potential. c. Energy Security and Diversification:
Onshore wind power contributes to energy security by diversifying the energy mix. Governments aim to reduce dependence on fossil fuels, mitigating geopolitical risks and ensuring a more sustainable and resilient energy supply.
Grab a look at our sample page @ Middle East and Africa Onshore Wind Power Market Report
Key Players for Middle East and Africa Onshore Wind Power Market Report
• Siemens Gamesa
• Vestas
• GE Renewable Energy
• EDF renewables
• TRACTEBEL Engie
• AMEA Power
• Masdar
• Suzlon Energy
• Mainstream Renewable Power Ltd.
• Nareva
• Acciona Energia SA
• Envision Group
Challenges and Solutions:
a. Grid Integration:
The intermittent nature of wind power poses challenges for grid integration. Investments in smart grid technologies and energy storage solutions are crucial to overcoming these challenges.
b. Financing and Investment
The upfront costs of onshore wind projects can be substantial. Governments and private investors need to collaborate to secure financing and create a conducive environment for investment.
c. Technological Advancements
Continued research and development are essential for enhancing the efficiency and reliability of onshore wind turbines. Investing in innovative technologies can address performance issues and reduce maintenance costs.
Future Outlook:a. Emerging Markets:
Several countries in the Middle East and Africa, such as Saudi Arabia, Nigeria, and Kenya, are emerging as potential hotspots for onshore wind power development. The growing awareness of climate change and the need for sustainable energy sources will likely drive further investments. b. Technological Innovations:
Ongoing advancements in wind turbine technology, energy storage, and grid management will play a pivotal role in shaping the future of onshore wind power in the region. Smarter and more efficient solutions will contribute to the competitiveness of wind energy.
c. Global Collaboration:
Collaborative efforts between governments, international organizations, and the private sector will be crucial for fostering a conducive environment for onshore wind power development. Sharing best practices, knowledge, and resources will accelerate progress.
Conclusion:
The Middle East and Africa are entering a new era in onshore wind power, driven by a confluence of factors such as favorable government policies, abundant wind resources, and the need for sustainable energy solutions. While challenges persist, the region holds immense potential for growth and innovation in the onshore wind power market, contributing to a more sustainable and resilient energy future. As investments increase and technology evolves, the winds of change are set to transform the energy landscape in the Middle East and Africa.
#middle east and africa onshore wind power market#middle east and africa onshore wind power market report#middle east and africa onshore wind power market industry
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Innovations in the Food Bulk Liquids Transportation Market: Ensuring Efficiency and Safety
The MV Dynamic Underwater Cables Market is set to witness notable growth over the forecast period 2023-2031, driven by the increasing demand for renewable energy sources, particularly offshore wind farms, and advancements in underwater communication technologies. Medium Voltage (MV) dynamic underwater cables are essential components for power transmission and communication across marine environments. These cables are crucial for ensuring the reliable transfer of electricity and data, making them indispensable in sectors such as energy, telecommunications, and marine infrastructure.
The MV Dynamic Underwater Cables market serves a wide range of industries, including renewable energy, oil and gas, marine research, and defense. As the global energy sector shifts towards cleaner alternatives, the demand for efficient transmission of electricity from offshore wind farms to onshore grids is fueling the need for advanced underwater cables. These cables are designed to withstand harsh marine conditions, such as high pressure, temperature variations, and the dynamic movements of water, ensuring consistent performance and reliability.
The MV dynamic underwater cables market was valued at US$ 1.4 billion in 2022 and is projected to grow at a CAGR of 11.3% from 2023 to 2031, reaching US$ 4.2 billion by the end of 2031. Factors such as government initiatives promoting renewable energy development, increasing investments in offshore oil and gas exploration, and advancements in underwater communication technologies will significantly contribute to this market's expansion.
For More Details, Request for a Sample of this Research Report: https://www.transparencymarketresearch.com/mv-dynamic-underwater-cables-market.html
Market Segmentation
The MV dynamic underwater cables market can be segmented based on several criteria:
By Service Type
Installation
Maintenance & Repair
Monitoring
Decommissioning
By Sourcing Type
Direct Purchase
Leasing
By Application
Power Transmission
Telecommunications
Oil and Gas Exploration
Military & Defense
Marine Research
By Industry Vertical
Energy & Power
Oil & Gas
Telecommunication
Defense
Others
By Region
North America
Europe
Asia-Pacific
Latin America
Middle East & Africa
Regional Analysis
Europe is anticipated to dominate the MV dynamic underwater cables market, largely due to the region’s aggressive push towards renewable energy, particularly offshore wind energy projects in countries like the UK, Germany, and Denmark. Government regulations and incentives promoting clean energy are key drivers in this region.
Asia-Pacific is expected to exhibit the fastest growth during the forecast period, driven by rising energy demands, increased offshore oil and gas exploration activities, and expanding renewable energy projects in countries such as China, India, and Japan. These nations are heavily investing in underwater cable infrastructure to meet their growing energy requirements and improve their telecommunications networks.
North America, led by the United States, will also see substantial growth, supported by the expansion of offshore wind projects and advancements in underwater communication technology. The region's oil and gas industry will further fuel demand for dynamic underwater cables.
Market Drivers and Challenges
Drivers:
Renewable Energy Transition: The global shift towards renewable energy, especially offshore wind, is significantly boosting the demand for MV dynamic underwater cables.
Technological Advancements: Innovations in cable design, including enhanced durability and efficiency, are driving market growth.
Marine Infrastructure Expansion: Expanding marine projects such as subsea oil and gas exploration, telecommunications networks, and military applications are accelerating demand.
Challenges:
High Installation and Maintenance Costs: The costs associated with the installation, monitoring, and repair of underwater cables can be substantial, limiting market penetration in certain regions.
Harsh Environmental Conditions: MV dynamic underwater cables must withstand extreme marine environments, which can lead to damage and increased maintenance needs.
Market Trends
Increased Use of Subsea Monitoring Technologies: Companies are incorporating advanced monitoring systems to detect and address cable faults in real-time, reducing downtime and ensuring the efficient functioning of underwater cables.
Growth in Offshore Wind Energy Projects: As governments focus on reducing carbon emissions, the rise of offshore wind projects is driving the need for reliable and durable underwater cable solutions.
Smart Cables with Integrated Sensors: Technological advancements are leading to the development of smart cables embedded with sensors to monitor temperature, pressure, and strain, enhancing operational efficiency.
Future Outlook
The future of the MV dynamic underwater cables market looks promising, with increasing investments in renewable energy projects, particularly offshore wind farms, expected to be a major growth driver. Additionally, advancements in cable technology, such as the integration of smart sensors for real-time monitoring, will further enhance market growth. The continued expansion of offshore oil and gas exploration, along with rising demand for robust underwater communication systems, will create lucrative opportunities for manufacturers and service providers in this market.
Key Market Study Points
Renewable Energy Projects: The surge in offshore wind energy installations is a primary driver of the market.
Technological Innovations: Advanced materials and smart technologies are being integrated into cable systems to enhance their performance and longevity.
Maintenance Solutions: Efficient maintenance and monitoring services are critical for reducing downtime and ensuring optimal cable performance.
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Competitive Landscape
The competitive landscape of the MV dynamic underwater cables market is characterized by the presence of several key players. Companies are focusing on strategic partnerships, mergers, and acquisitions to expand their market presence and improve their product offerings. Leading companies in this market include:
Prysmian Group
Nexans
NKT
Sumitomo Electric Industries
JDR Cable Systems
These players are continuously investing in R&D to develop innovative cable solutions that can withstand the dynamic underwater environment and provide reliable performance across multiple applications.
Recent Developments
Prysmian Group recently launched a new range of underwater cables with enhanced durability and resistance to harsh environmental conditions.
Nexans announced a partnership with a leading energy company to supply dynamic underwater cables for an offshore wind project in Europe.
JDR Cable Systems secured a contract to supply MV dynamic underwater cables for a major oil and gas exploration project in the North Sea.
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The Wind Turbine Casting Market size is forecast to reach $2.85 billion by 2027, growing at a CAGR of 6.02% from 2022 to 2027. Rising government investment toward green electricity generation by integrating wind power technology is positively impacting the installation of wind turbines across the globe. Wind turbines consist of various parts which include a rotor shaft, rotor hubs, rotor blades, gearbox, generators, towers, rotor bearings, power converter, transformer, nacelle housing, cables and others. Wind turbines are designed with a lifespan of 20 years and thus, the components require high fatigue strength. Wind Turbine Casting aids in high creep resistance and can be considered vital in developing composite components. The primary parts such as rotor hubs, axle pins and main carriers are subjected to high stress and thus these components are in dire need of undergoing a casting process. Factors such as favorable government policies promoting renewable energy usage and the demand for reducing carbon imprints and emissions are fueling the installation of wind turbines across the globe, which in turn is set to spur the demand for wind turbine casting for years to come. Does the German federal government plan to expand offshore wind power to a capacity of 15,000?MW by the year 2030 to reduce the CO2 emissions and this in turn is set to aid the growth of the Wind Turbine Casting Market in future years.
Wind Turbine Casting Market Report Coverage
The “Wind Turbine Casting Market Report - Forecast (2022-2027)” by IndustryARC, covers an in-depth analysis of the following segments in the Wind Turbine Casting Market.
By Type: Horizontal Axis Turbine and Vertical Axis Turbine. By Material Type: steel, cast iron, aluminum alloy, glass-reinforced plastic, copper and others. By Capacity: <3 MW, 3-5 MW, 5-8 MW and >8 MW. By Casting Technology: sand casting, chill casting and others. By Component: Tower/ foundation, rotor hubs, rotor blades, axle pins, rotor shaft, rotor bearings, gearbox and others. By Application: Offshore and Onshore. By End-user: Industrial, Commercial, Residential By Geography: North America (the U.S., Canada, Mexico), Europe (Germany, UK, France, Italy, Spain, Russia and Others), APAC (China, Japan India, South Korea, Australia and Others), South America (Brazil, Argentina and others) and RoW (the Middle East and Africa).
#Wind Turbine Casting Market Share#Wind Turbine Casting Market Size#Wind Turbine Casting Market Forecast#Wind Turbine Casting Market Research#Wind Turbine Casting Market Treads#Wind Turbine Casting Market Application#Wind Turbine Casting Market Growth#Wind Turbine Casting Market Price
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Airborne Wind Turbines Market Rewriting Long Term Growth Story
The Latest research coverage on Airborne Wind Turbines Market provides a detailed overview and accurate market size. The study is designed considering current and historical trends, market development and business strategies taken up by leaders and new industry players entering the market. Furthermore, study includes an in-depth analysis of global and regional markets along with country level market size breakdown to identify potential gaps and opportunities to better investigate market status, development activity, value and growth patterns. Access Sample Report + All Related Graphs & Charts @: https://www.advancemarketanalytics.com/sample-report/108074-global-airborne-wind-turbines-market
Major & Emerging Players in Airborne Wind Turbines Market:- General Electric (United States), Altaeros (United States), Brainwhere (Switzerland), Ampyx Power (Netherlands), MZA Associates Corporation (United States), Enerkite (Germany), eWind Solutions Inc. (United States), Windlift (United States), Kitemill (Norway), SkySails Power (Germany), Skypull (Switzerland), Joby Energy (United States) The Airborne Wind Turbines Market Study by AMA Research gives an essential tool and source to Industry stakeholders to figure out the market and other fundamental technicalities, covering growth, opportunities, competitive scenarios, and key trends in the Airborne Wind Turbines market. Airborne wind turbines are types of wind turbines with rotors supported in air without towers. In airborne wind energy, the turbine is mounted on a flying wing or wings attached to the ground by a tether with the generators. Airborne wind turbines are becoming popular due to its less maintenance cost and can generate a huge amount of energy compared to conventional wind turbines. Further, the robust growth of the offshore wind energy sector across the globe to meet the increased global energy demand will boost the adoption of airborne wind turbines for offshore applications. The titled segments and sub-section of the market are illuminated below: by Type (Small Wind Turbines, Large Wing Turbines), Application (Onshore Wind Energy, Offshore Wind Energy), Technology (Flying Blades, Wings Attached To The Ground), Material (Aluminum, Glass Fiber Reinforced Plastics, Carbon Fiber) Market Trends: Increasing Use of Carbon Fiber Material and Development of Lightweight Airborne Wind Turbines
Opportunities: Inclination Towards the Large Airborne Wind Turbines for Producing a Large Amount of Electricity
Growing Popularity of Airborne Wind Energy for Mountainous and Remote Locations
Huge Investment by the Government and Favorable Policies to Boost the Adopti
Market Drivers: Increased Adoption of Next-Generation Technologies to Produce Energy from Renewable Sources
Significant Growth of Renewable Energy Sector and Expansion of Wind Energy Due to Low Maintenance Cost Compared to Others
Preference Towards the Offshore Wind En
Challenges: Disadvantages Associated with Larger Diameters of Conductive Tethers May Limit the Adoption Enquire for customization in Report @: https://www.advancemarketanalytics.com/enquiry-before-buy/108074-global-airborne-wind-turbines-market Some Point of Table of Content: Chapter One: Report Overview Chapter Two: Global Market Growth Trends Chapter Three: Value Chain of Airborne Wind Turbines Market Chapter Four: Players Profiles Chapter Five: Global Airborne Wind Turbines Market Analysis by Regions Chapter Six: North America Airborne Wind Turbines Market Analysis by Countries Chapter Seven: Europe Airborne Wind Turbines Market Analysis by Countries Chapter Eight: Asia-Pacific Airborne Wind Turbines Market Analysis by Countries Chapter Nine: Middle East and Africa Airborne Wind Turbines Market Analysis by Countries Chapter Ten: South America Airborne Wind Turbines Market Analysis by Countries Chapter Eleven: Global Airborne Wind Turbines Market Segment by Types Chapter Twelve: Global Airborne Wind Turbines Market Segment by Applications What are the market factors that are explained in the Airborne Wind Turbines Market report?
– Key Strategic Developments: Strategic developments of the market, comprising R&D, new product launch, M&A, agreements, collaborations, partnerships, joint ventures, and regional growth of the leading competitors.
– Key Market Features: Including revenue, price, capacity, capacity utilization rate, gross, production, production rate, consumption, import/export, supply/demand, cost, market share, CAGR, and gross margin.– Analytical Tools: The analytical tools such as Porter’s five forces analysis, SWOT analysis, feasibility study, and investment return analysis have been used to analyze the growth of the key players operating in the market. Buy This Exclusive Research Here: https://www.advancemarketanalytics.com/buy-now?format=1&report=108074 Definitively, this report will give you an unmistakable perspective on every single reality of the market without a need to allude to some other research report or an information source. Our report will give all of you the realities about the past, present, and eventual fate of the concerned Market. Thanks for reading this article; you can also get individual chapter wise section or region wise report version like North America, Europe or Asia. Contact US : Craig Francis (PR & Marketing Manager) AMA Research & Media LLP Unit No. 429, Parsonage Road Edison, NJ New Jersey USA – 08837 Phone: +1 201 565 3262, +44 161 818 8166 [email protected]
#Global Airborne Wind Turbines Market#Airborne Wind Turbines Market Demand#Airborne Wind Turbines Market Trends#Airborne Wind Turbines Market Analysis#Airborne Wind Turbines Market Growth#Airborne Wind Turbines Market Share#Airborne Wind Turbines Market Forecast#Airborne Wind Turbines Market Challenges
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Green Hydrogen Market, Growth size, Share, Trends and Forecast-2030
The market research report provides a comprehensive analysis of the industry, with a specific focus on the Green Hydrogen Market. It examines the size, growth rate, and major trends within the Green Hydrogen Market, offering valuable insights into its current state and future prospects. The report explores the significance of Green Hydrogen in driving market dynamics and shaping business strategies. It investigates the market drivers, such as increasing consumer demand and emerging trends related to Coated Steel, providing a deep understanding of the factors influencing market growth. Additionally, the report assesses the competitive landscape within the Green Hydrogen Market, profiling key players and their market share, strategies, and product offerings. It also addresses market segmentation, identifying different segments within the c market and their unique characteristics. Overall, the market research report equips businesses operating in the Green Hydrogen Market with valuable information and actionable recommendations to capitalize on opportunities and navigate the challenges in the industry.
Request Free Sample Report @ https://www.vertexbusinessinsights.com/request-sample/110/green-hydrogen-market
This research covers COVID-19 impacts on the upstream, midstream and downstream industries. Moreover, this research provides an in-depth market evaluation by highlighting information on various aspects covering market dynamics like drivers, barriers, opportunities, threats, and industry news & trends. In the end, this report also provides in-depth analysis and professional advices on how to face the post COIVD-19 period.
The research methodology used to estimate and forecast this market begins by capturing the revenues of the key players and their shares in the market. Various secondary sources such as press releases, annual reports, non-profit organizations, industry associations, governmental agencies and customs data, have been used to identify and collect information useful for this extensive commercial study of the market. Calculations based on this led to the overall market size. After arriving at the overall market size, the total market has been split into several segments and sub segments, which have then been verified through primary research by conducting extensive interviews with industry experts such as CEOs, VPs, directors, and executives. The data triangulation and market breakdown procedures have been employed to complete the overall market engineering process and arrive at the exact statistics for all segments and sub segments.
Green Hydrogen Market Segments
The Global Green Hydrogen market has been segmented further by technology, end-user, distribution channel, application, location, source and regions
By technology
Proton exchange membrane electrolizer
Solid-oxide electrolizer
Alkaline electrolizer
By End- user
Food and Beverages
Chemical
Medical
Petro-chemicals
Glass
Mobility
Others
By Distribution Channel
Pipeline
High-pressure containers
Ships
Others
By Application
Transport
Power generation
Industry energy
Industry feedstock building
Heat and power
By Location
Offshore
Onshore.
By sources
Wind energy
Solar energy
Others.
By Regions
North America
South America
Europe
Asia-pacific
Middle-east & Africa
Ask Queries @ https://www.vertexbusinessinsights.com/enquiry/110/green-hydrogen-market
1 Executive Summary
2 Market Introduction
2.1 Definition
2.2 Architecture
2.3 Scope of the Study
2.4 Related Stakeholders
3 Research Methodology
3.1 Introduction
3.2 Primary Research
3.2.1 Key Insights
3.2.2 Breakdown of Primary Interviews
3.3 Secondary Research
3.3.1 Important Sources
3.4 Market Size Estimation Approaches
3.4.1 Top-Down Approach
3.4.2 Bottom-Up Approach
3.4.3 Data Triangulation
3.5 List of Assumptions
4 Market Dynamics
4.1 Introduction
4.2 Drivers
4.3 Restraints
4.4 Opportunities
4.5 Porter's Five Forces Model Analysis
4.6 Value Chain Analysis
4.7 Impact of COVID-19 on Global Green Hydrogen Market
5 Global Green Hydrogen Market, By Technology
5.1 Introduction
5.2 Proton exchange membrane electrolizer
5.3 Solid-oxide electrolizer
5.4 Alkaline electrolizer
6 Global Green Hydrogen Market, By End-user
6.1 Introduction
6.2 Food and Beverages
6.3 Chemical
6.4 Medical
6.5 Petro-chemicals
6.6 Glass
6.7 Mobility
6.8 Others
7 Global Green Hydrogen Market, By Distribution Channel
7.1 Introduction
7.2 Pipeline
7.3 High-pressure containers
7.4 Ships
7.5 Others
8 Global Green Hydrogen Market, By Application
8.1 Introduction
8.2 Transport
8.3 Power generation
8.4 Industry energy
8.5 Industry feedstock building
8.6 Heat and power
9 Global Green Hydrogen Market, By Location
9.1 Introduction
9.2 Off-shore
9.3 On-shore
10 Global Green Hydrogen Market, By Sources
10.1 Introduction
10.2 Wind energy
10.3 Solar energy
10.4 Others.
11 Global Green Hydrogen Market, By Region
11.1 Introduction
11.2 North America
11.2.1 US
11.2.2 Canada
11.2.3 Mexico
11.3 Europe
11.3.1 Germany
11.3.2 UK
11.3.3 France
11.3.4 Italy
11.3.5 Spain
11.3.6 Rest of Europe
11.4 Asia-Pacific
11.4.1 China
11.4.2 India
11.4.3 Japan
11.4.4 South Korea
11.4.5 Rest of Asia-Pacific
11.5 Middle East and Africa
11.6 South America
12 Competitive Landscape
12.1 Introduction
12.2 Vendor Evaluation Criteria
12.3 Vendor Share Analysis, 2021
12.4 Recent Developments, 2019-2021
12.4.1 New End-user Launches
12.4.2 Partnerships
12.4.3 Mergers or Acquisitions
12.4.4 Business Expansions
13 Company Profiles
(This section covers the Business Overview, Financial Overview, End-user and End-user Offerings, Recent Developments, SWOT Analysis, and Key Strategies of the top market vendors. The given sequence does not represent their rankings in the market.
13.1 Green Hydrogen Systems
13.2 Solena Groups
13.3 H2X
13.4 Siemens Gas and Power GmbH & Co. KG
13.5 Engie
13.6 Fuelcell Works
13.7 Plug power
13.8 Hydrogenics
13.9 Ballard Power Systems
13.10 Nikola Motors
13.11 Ergosup
13.12 Loop Energy
13.13 Syzygy Plasmonics
13.14 Uniper SE
13.15 Linde
13.16 Nel ASA
13.17 Toshiba Energy Systems and Solutions Corp
13.18 Iberdrola
13.19 Hiringa energy limited
13.20 Lhyfe
13.21 Others
14 Appendix
14.1 Discussion Guide
14.2 Customization Options
14.3 Related Reports
Continue…
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Green Hydrogen Market, Share, Size, Trends, Industry Analysis, Forecast and Outlook
The market research report provides a comprehensive analysis of the industry, with a specific focus on the Green Hydrogen Market. It examines the size, growth rate, and major trends within the Green Hydrogen Market, offering valuable insights into its current state and future prospects. The report explores the significance of Fibre Reinforced Polymer Composites (FRP) in driving market dynamics and shaping business strategies. It investigates the market drivers, such as increasing consumer demand and emerging trends related to Fibre Reinforced Polymer Composites (FRP), providing a deep understanding of the factors influencing market growth. Additionally, the report assesses the competitive landscape within the Green Hydrogen Market, profiling key players and their market share, strategies, and product offerings. It also addresses market segmentation, identifying different segments within the Green Hydrogen Market and their unique characteristics. Overall, the market research report equips businesses operating in the Green Hydrogen Market with valuable information and actionable recommendations to capitalize on opportunities and navigate the challenges in the industry.
Request Free Sample Report @ https://www.vertexbusinessinsights.com/request-sample/110/green-hydrogen-market
This research covers COVID-19 impacts on the upstream, midstream and downstream industries. Moreover, this research provides an in-depth market evaluation by highlighting information on various aspects covering market dynamics like drivers, barriers, opportunities, threats, and industry news & trends. In the end, this report also provides in-depth analysis and professional advices on how to face the post COIVD-19 period.
The research methodology used to estimate and forecast this market begins by capturing the revenues of the key players and their shares in the market. Various secondary sources such as press releases, annual reports, non-profit organizations, industry associations, governmental agencies and customs data, have been used to identify and collect information useful for this extensive commercial study of the market. Calculations based on this led to the overall market size. After arriving at the overall market size, the total market has been split into several segments and sub segments, which have then been verified through primary research by conducting extensive interviews with industry experts such as CEOs, VPs, directors, and executives. The data triangulation and market breakdown procedures have been employed to complete the overall market engineering process and arrive at the exact statistics for all segments and sub segments.
Green Hydrogen Market Segments
The Global Green Hydrogen market has been segmented further by technology, end-user, distribution channel, application, location, source and regions
By technology
Proton exchange membrane electrolizer
Solid-oxide electrolizer
Alkaline electrolizer
By End- user
Food and Beverages
Chemical
Medical
Petro-chemicals
Glass
Mobility
Others
By Distribution Channel
Pipeline
High-pressure containers
Ships
Others
By Application
Transport
Power generation
Industry energy
Industry feedstock building
Heat and power
By Location
Offshore
Onshore.
By sources
Wind energy
Solar energy
Others.
By Regions
North America
South America
Europe
Asia-pacific
Middle-east & Africa
Ask Queries @ https://www.vertexbusinessinsights.com/enquiry/110/green-hydrogen-market
Table of Content
1 Executive Summary
2 Market Introduction
2.1 Definition
2.2 Architecture
2.3 Scope of the Study
2.4 Related Stakeholders
3 Research Methodology
3.1 Introduction
3.2 Primary Research
3.2.1 Key Insights
3.2.2 Breakdown of Primary Interviews
3.3 Secondary Research
3.3.1 Important Sources
3.4 Market Size Estimation Approaches
3.4.1 Top-Down Approach
3.4.2 Bottom-Up Approach
3.4.3 Data Triangulation
3.5 List of Assumptions
4 Market Dynamics
4.1 Introduction
4.2 Drivers
4.3 Restraints
4.4 Opportunities
4.5 Porter's Five Forces Model Analysis
4.6 Value Chain Analysis
4.7 Impact of COVID-19 on Global Green Hydrogen Market
5 Global Green Hydrogen Market, By Technology
5.1 Introduction
5.2 Proton exchange membrane electrolizer
5.3 Solid-oxide electrolizer
5.4 Alkaline electrolizer
6 Global Green Hydrogen Market, By End-user
6.1 Introduction
6.2 Food and Beverages
6.3 Chemical
6.4 Medical
6.5 Petro-chemicals
6.6 Glass
6.7 Mobility
6.8 Others
7 Global Green Hydrogen Market, By Distribution Channel
7.1 Introduction
7.2 Pipeline
7.3 High-pressure containers
7.4 Ships
7.5 Others
8 Global Green Hydrogen Market, By Application
8.1 Introduction
8.2 Transport
8.3 Power generation
8.4 Industry energy
8.5 Industry feedstock building
8.6 Heat and power
9 Global Green Hydrogen Market, By Location
9.1 Introduction
9.2 Off-shore
9.3 On-shore
10 Global Green Hydrogen Market, By Sources
10.1 Introduction
10.2 Wind energy
10.3 Solar energy
10.4 Others.
11 Global Green Hydrogen Market, By Region
11.1 Introduction
11.2 North America
11.2.1 US
11.2.2 Canada
11.2.3 Mexico
11.3 Europe
11.3.1 Germany
11.3.2 UK
11.3.3 France
11.3.4 Italy
11.3.5 Spain
11.3.6 Rest of Europe
11.4 Asia-Pacific
11.4.1 China
11.4.2 India
11.4.3 Japan
11.4.4 South Korea
11.4.5 Rest of Asia-Pacific
11.5 Middle East and Africa
11.6 South America
12 Competitive Landscape
12.1 Introduction
12.2 Vendor Evaluation Criteria
12.3 Vendor Share Analysis, 2021
12.4 Recent Developments, 2019-2021
12.4.1 New End-user Launches
12.4.2 Partnerships
12.4.3 Mergers or Acquisitions
12.4.4 Business Expansions
13 Company Profiles
(This section covers the Business Overview, Financial Overview, End-user and End-user Offerings, Recent Developments, SWOT Analysis, and Key Strategies of the top market vendors. The given sequence does not represent their rankings in the market.
13.1 Green Hydrogen Systems
13.2 Solena Groups
13.3 H2X
13.4 Siemens Gas and Power GmbH & Co. KG
13.5 Engie
13.6 Fuelcell Works
13.7 Plug power
13.8 Hydrogenics
13.9 Ballard Power Systems
13.10 Nikola Motors
13.11 Ergosup
13.12 Loop Energy
13.13 Syzygy Plasmonics
13.14 Uniper SE
13.15 Linde
13.16 Nel ASA
13.17 Toshiba Energy Systems and Solutions Corp
13.18 Iberdrola
13.19 Hiringa energy limited
13.20 Lhyfe
13.21 Others
14 Appendix
14.1 Discussion Guide
14.2 Customization Options
14.3 Related Reports
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Innovation Unplugged: Emerging Technologies in the Energy Cable Sector
Energy cables are electrical cables designed to transport generated electricity to its final destination. They come in various load-carrying capacities, materials, and voltage ranges, distinguishing them based on their intended use.
These cables can be installed underground or overhead and are categorized into three types: high-voltage, medium-voltage, and low-voltage cables. Power cables find extensive application in power utilities, facilitating the transmission and distribution of electrical energy. They are utilized in residential, commercial, oil & gas, power utility, mining, and renewable energy sectors.
𝐑𝐞𝐪𝐮𝐞𝐬𝐭 𝐒𝐚𝐦𝐩𝐥𝐞 𝐏𝐃𝐅 𝐁𝐫𝐨𝐜𝐡𝐮𝐫𝐞: https://www.alliedmarketresearch.com/request-toc-and-sample/15940
Impact of COVID-19:
The energy cable market experienced adverse effects due to the COVID-19 pandemic. The reduction in industrial activities, stemming from the outbreak of COVID-19, led to decreased energy demand, subsequently impacting the demand for energy cables. Lockdowns implemented in various countries disrupted supply chains, causing procurement issues for raw materials used in cable production. These factors collectively resulted in a decline in revenue for the energy cable market.
Key Influencing Factors:
The global energy cable market is driven by the need for new power grid infrastructure to meet increasing electricity demand, particularly in regions where electricity access is limited. Many developing countries are focusing on rapidly developing safe electricity grid infrastructure to address this need. The presence of numerous large-scale energy cable manufacturers and their diverse product offerings is expected to propel the global energy cable market's growth, with increased demand for power cables for power utility applications.
Market Trends:
The Asia-Pacific region is anticipated to dominate the global energy cable market, with a significant number of energy cable manufacturers, and strong industrial growth in countries such as India, China, Malaysia, and Indonesia. Moreover, players in Asia-Pacific are actively involved in innovative energy cable technology development.
𝐄𝐧𝐪𝐮𝐢𝐫𝐲 𝐁𝐞𝐟𝐨𝐫𝐞 𝐁𝐮𝐲𝐢𝐧𝐠 : https://www.alliedmarketresearch.com/purchase-enquiry/15940
North America and Europe are expected to experience moderate growth in the energy cable market, while the Middle East and Africa are projected to grow at a substantial rate during the forecast period. Market players are adopting various strategies, such as acquisitions, mergers, new product launches, partnerships, and agreements to expand their business.
Notable Examples:
MHI Vestas signed a two-year supply agreement with Nexans SA for Windlink cable kits, involving the installation of cable kits for onshore wind turbines in China, Europe, the United States, and Brazil.
ABB signed a $640 million deal in 2017 to build a long-distance power transmission network in India, collaborating with India's national energy grid operator, Power Grid Corporation of India Limited.
Key Benefits of the Report:
This report provides an analytical overview of the energy cable industry, highlighting current trends and future investment opportunities. It offers insights into key drivers, constraints, and opportunities, along with a detailed analysis of market share. The report quantitatively analyzes the market from 2020 to 2030 to showcase growth scenarios and uses Porter's five forces analysis to assess buyer and supplier power. It also provides a comprehensive analysis of the market based on competitive intensity and future competition.
𝐆𝐞𝐭 𝐚 𝐂𝐮𝐬𝐭𝐨𝐦𝐢𝐳𝐞𝐝 𝐑𝐞𝐬𝐞𝐚𝐫��𝐡 𝐑𝐞𝐩𝐨𝐫𝐭 @ : https://www.alliedmarketresearch.com/request-for-customization/15940
Energy Cable Market Report Highlights:
Materials:
Copper
Aluminum
Voltage:
High Voltage,
Medium Voltage,
Low Voltage
End-User Industries:
Power Transmission
Telecommunication
Refineries and Oil Rigs
Construction
and Others
Regions:
Asia-Pacific
North America
Europe South America
Middle East
Africa
Key Market Players:
Encore Wire Corporation
NKT Cables
Polycab India
Nexans
ABB
Prysmian Group
Riyadh Cables Group Company
Bahra Cables Company
BRUGG Cables
Finolex Cables
General Cable
KEI Industries
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Power Grid Market to Grow USD 410 billion in 2030 | Component, Power Source, Application, Region and Key Players
The global Power Grid Market size was estimated at USD 279.6 billion in 2023 and is projected to reach USD 410 billion in 2030 at a CAGR of 5.6% during the forecast period 2023-2030.
The power grid constitutes a network of interconnected power producers and consumers that are subject to management by one or more control centers and united by transmission and distribution lines. The reference of "power grid" by most individuals is often directed to the electricity transmission system. The power grid framework encompasses transmission lines and halls, power stations, as well as power distribution channels, all of which are overseen and regulated by power grid operators and service providers. This guarantees that energy reservoirs are utilized in the most sophisticated manner possible, amplifies the potential of the potent force, and augments the efficiency and accountability of power system operations.
The need for stable and reliable transmission and distribution networks has arisen due to the increasing demand for energy. A system capable of handling sudden power shorts and drops is necessary to ensure uninterrupted power supply. In developed countries, substations are being modernized to minimize losses and maintain a continuous power supply. This is achieved through the replacement of old components with modern and more efficient ones. These upgrades are designed to be smart and more protective against overcurrent situations. The investments in transmission and distribution (T&D) infrastructure are driven by the growing demand for renewable energy sources and the increasing number of power generation plants. This makes the T&D system capable of handling long-distance power flow and minimizing energy losses caused by strong currents.
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The prominent players in the Power Grid Market are
ABB
Eaton
Fuji Electric
General Electric
Havells
Hitachi Energy
Hubbell
Hyundai Electric & Energy Systems Co., Ltd.
LS Electric
Mitsubishi Electric
Nexans
NKT
Powell Industries
Prysmian Group
Schneider Electric
Secheron
Siemens
Southwire Company
Sumitomo Electric
Toshiba Energy System & Solutions Corporation
Power Grid Market Recent Developments:
In November 2022, GE Renewable Energy launched HYpact switchgear. It can be used in several applications such as mobile (truck-mounted) substations and onshore wind substations. It makes the electrical network more predictable also reduces the customer’s operational costs, as well as their impact on the environment.
In October 2022, Siemens and Eplan have formed a strategic alliance to expand their collaboration in software solutions for the industrial and infrastructure markets. Siemens' Electrical Products business unit will join the Eplan Partner Network as a strategic partner as part of this agreement. The goal is to better coordinate the products of both companies in order to provide optimised solutions for switchgear manufacturers and electrical planners.
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Scope of the Power Grid Market Report
The Power Grid Market is segmented into various segments such as component, power source, application, and region:
Based on component, the power grid market is segmented into:
Cables
Variable Speed Drives
Transformers
Switchgear
Others
based on the power source, the power grid market is segmented into:
Oil
Natural Gas
Coal
Hydro Electric
Renewables
Others
based on the application, the power grid market is segmented into:
Generation
Transmission
Distribution
based on region, the power grid market is segmented into:
Asia Pacific
North America
Europe
South America
Middle East & Africa
Power Grid Market Regional Analysis:
Asia Pacific to Dominate the Market
Asia Pacific is estimated to account for the largest market share during the forecast period. In Asia Pacific, increasing electricity demand is one of the primary drivers of growth in the Asia Pacific power grid market.
Moreover, the population in the Asia Pacific region is growing, so the electricity demand is increasing.
The Power Grid Market report answers a number of crucial questions, including:
Which companies dominate the Power Grid Market?
What current trends will influence the market over the next few years?
What are the market's opportunities, obstacles, and driving forces?
What predictions for the future can help with strategic decision-making?
What advantages does market research offer businesses?
Which particular market segments should industry players focus on in order to take advantage of the most recent technical advancements?
What is the anticipated growth rate for the market economy globally?
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Next Generation Biofuels Market: https://www.delvens.com/report/next-generation-biofuels-market-trends-forecast-till-2030
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Onshore Wind Turbines Market to Witness Excellent Revenue Growth Owing to Rapid Increase in Demand
A Latest intelligence report published by AMA Research with title "Global Onshore Wind Turbines Market Outlook to 2027. This detailed report on Onshore Wind Turbines Market provides a detailed overview of key factors in the Global Onshore Wind Turbines Market and factors such as driver, restraint, past and current trends, regulatory scenarios and technology development.
Onshore wind turbines are built on land to generate electricity. It is an important factor for the future energy infrastructure. Onshore wind is a proven and mature technology with an extensive global supply chain. Onshore wind market was driven by an acceleration in China as developers rushed to complete projects before subsidies expired. Largest operational onshore wind farms are located in China, India, and the United States.
Major Players in this Report Include are
General Electric (United States)
Vestas (Denmark)
Siemens Gamesa (Spain)
Goldwind (China)
Envision (China)
MingYang (China)
Windey (China)
Nordex (Germany)
Shanghai Electric (China)
CSIC (China) Market Drivers: Increasing Value to Customers with Proven Performance, Reliability, Efficiency, and Availability
Market Trend: The Transition towards Renewable Energy
Long-term Structural Support from Investments in the Power Sector
Opportunities: Rapidly Developing Technology behind Onshore Turbines
Intensively Investing on R&D in Terms of Product Innovation
The Global Onshore Wind Turbines Market segments and Market Data Break Down by Type (Centralized Wind Power, Distributed Wind Power), End-User (Commercial, Industrial, Others), Foundation (Spread Foundations, Piled Foundations), Power (2 GW - 1.5 GW, 1.5 GW – 3.5 GW, 3.5 GW <)
Geographically World Onshore Wind Turbines markets can be classified as North America, Europe, Asia Pacific (APAC), Middle East and Africa and Latin America. North America has gained a leading position in the global market and is expected to remain in place for years to come. The growing demand for Global Onshore Wind Turbines markets will drive growth in the North American market over the next few years.
Presented By
AMA Research & Media LLP
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Wind Power Market Segmented On The Basis Of Application, Location, Region And Forecast 2030: Grand View Research Inc.
Wind Power Market Segmented On The Basis Of Application, Location, Region And Forecast 2030: Grand View Research Inc.
San Francisco, 22 Dec 2022: The Report Wind Power Market Size, Share & Trends Analysis Report By Location (Onshore, Offshore), By Application (Utility, Non-utility), By Region (North America, Europe, Asia Pacific, South America, Middle East & Africa), And Segment Forecasts, 2022 – 2030 The global wind power market size is expected to reach USD 165.99 billion by 2030, according to a new report by…
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#Wind Power Industry#Wind Power Market#Wind Power Market 2022#Wind Power Market Revenue#Wind Power Market Share#Wind Power Market Size
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Global Wind Turbine Nacelle Market Trends, Size, and Forecast 2022-2027
The Global Wind Turbine Nacelle Market was valued at US$6600 million in 2021 and it is expected to reach at US$15,620 million in 2027 at a CAGR of 11.56% during forecast period 2022-2027.
The drive train and other tower-top components of a wind turbine are contained inside the wind turbine's nacelle. A yaw bearing supports it, allowing it to rotate in response to changes in the wind's direction. The nacelle needs to be approachable for maintenance and repairs. Typically, access is gained by a tower elevator and ladders.
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Market Drivers
As one of the energy sources with the greatest rate of worldwide expansion, wind energy offers a number of advantages. Because the majority of the best wind sites are located in rural areas, this has a huge economic impact there. Because wind farms only occupy a small fraction of the land, farmers and ranchers can continue to make a living from the property. Farmers and ranchers who rent their land to wind power plant owners for the usage of the property see their revenue rise as a result of the rent. The sector is growing more quickly as a result of the endless supply of wind energy. The industry will continue to increase as a result of factors such quick urbanization and growing public knowledge of the benefits of using wind energy.
Market Restraints
The high capital cost of the wind turbine nacelle slows the growth rate of the component. In addition, wind turbines frequently present additional logistical difficulties. The wind turbine nacelle's high initial purchase price in addition to maintenance, installation, and transportation costs. Therefore, the cost constraints will pose yet another major obstacle to the market expansion for wind turbine nacelles.
Market Segmentation
The global wind turbine nacelle market is segmented into deployment, turbine capacity and application. By deployment it segmented into onshore, offshore. By turbine capacity it segmented into less than 1.5 mw, 1.5 to 2mw, 2 to 2.5 mw, greater than 2.5 mw. By application it segmented into residential, utility, industrial, and commercial.
Regional Analysis
The global wind turbine nacelle market segmented into five regions North America, Europe, Latin America, Asia Pacific, Middle East and Africa. In terms of market share and revenue, Asia-Pacific dominates the wind turbine nacelle market, and this dominance will flourish during the projection period as a result of the rapid rise in demand for renewable energy sources. The region's market expansion will be aided in the foreseeable future by the size of the customer base.
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Key Players
Various key players are listed in this report such as General Electric (U.S.), Vestas (Denmark), Siemens (Spain), Goldwind (China), Shanghai Electric (China), ABB (Switzerland), Doosan Corporation (South Korea), Hitachi Ltd. (Japan), Nordex SE (Germany), EEW Group (Germany)
Market Taxonomy
By Deployment
• Onshore • Offshore
By Turbine Capacity
• Less Than 1.5 Mw • 1.5 To 2mw • 2 To 2.5 Mw • Greater Than 2.5 Mw
By Application
• Residential • Utility • Industrial • Commercial
Key Question Addressed by the Report
• What are the Key Opportunities in Global Wind Turbine Nacelle Market? • What will be the growth rate from 2022 to 2027? • Which segment/region will have highest growth? • What are the factors that will impact/drive the Market? • What is the role of key players in the value chain?
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MV Dynamic Underwater Cables Market: Growth Projections and Key Trends Through 2031
The MV Dynamic Underwater Cables Market is set to witness notable growth over the forecast period 2023-2031, driven by the increasing demand for renewable energy sources, particularly offshore wind farms, and advancements in underwater communication technologies. Medium Voltage (MV) dynamic underwater cables are essential components for power transmission and communication across marine environments. These cables are crucial for ensuring the reliable transfer of electricity and data, making them indispensable in sectors such as energy, telecommunications, and marine infrastructure.
The MV Dynamic Underwater Cables market serves a wide range of industries, including renewable energy, oil and gas, marine research, and defense. As the global energy sector shifts towards cleaner alternatives, the demand for efficient transmission of electricity from offshore wind farms to onshore grids is fueling the need for advanced underwater cables. These cables are designed to withstand harsh marine conditions, such as high pressure, temperature variations, and the dynamic movements of water, ensuring consistent performance and reliability.
The MV dynamic underwater cables market was valued at US$ 1.4 billion in 2022 and is projected to grow at a CAGR of 11.3% from 2023 to 2031, reaching US$ 4.2 billion by the end of 2031. Factors such as government initiatives promoting renewable energy development, increasing investments in offshore oil and gas exploration, and advancements in underwater communication technologies will significantly contribute to this market's expansion.
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Market Segmentation
The MV dynamic underwater cables market can be segmented based on several criteria:
By Service Type
Installation
Maintenance & Repair
Monitoring
Decommissioning
By Sourcing Type
Direct Purchase
Leasing
By Application
Power Transmission
Telecommunications
Oil and Gas Exploration
Military & Defense
Marine Research
By Industry Vertical
Energy & Power
Oil & Gas
Telecommunication
Defense
Others
By Region
North America
Europe
Asia-Pacific
Latin America
Middle East & Africa
Regional Analysis
Europe is anticipated to dominate the MV dynamic underwater cables market, largely due to the region’s aggressive push towards renewable energy, particularly offshore wind energy projects in countries like the UK, Germany, and Denmark. Government regulations and incentives promoting clean energy are key drivers in this region.
Asia-Pacific is expected to exhibit the fastest growth during the forecast period, driven by rising energy demands, increased offshore oil and gas exploration activities, and expanding renewable energy projects in countries such as China, India, and Japan. These nations are heavily investing in underwater cable infrastructure to meet their growing energy requirements and improve their telecommunications networks.
North America, led by the United States, will also see substantial growth, supported by the expansion of offshore wind projects and advancements in underwater communication technology. The region's oil and gas industry will further fuel demand for dynamic underwater cables.
Market Drivers and Challenges
Drivers:
Renewable Energy Transition: The global shift towards renewable energy, especially offshore wind, is significantly boosting the demand for MV dynamic underwater cables.
Technological Advancements: Innovations in cable design, including enhanced durability and efficiency, are driving market growth.
Marine Infrastructure Expansion: Expanding marine projects such as subsea oil and gas exploration, telecommunications networks, and military applications are accelerating demand.
Challenges:
High Installation and Maintenance Costs: The costs associated with the installation, monitoring, and repair of underwater cables can be substantial, limiting market penetration in certain regions.
Harsh Environmental Conditions: MV dynamic underwater cables must withstand extreme marine environments, which can lead to damage and increased maintenance needs.
Market Trends
Increased Use of Subsea Monitoring Technologies: Companies are incorporating advanced monitoring systems to detect and address cable faults in real-time, reducing downtime and ensuring the efficient functioning of underwater cables.
Growth in Offshore Wind Energy Projects: As governments focus on reducing carbon emissions, the rise of offshore wind projects is driving the need for reliable and durable underwater cable solutions.
Smart Cables with Integrated Sensors: Technological advancements are leading to the development of smart cables embedded with sensors to monitor temperature, pressure, and strain, enhancing operational efficiency.
Future Outlook
The future of the MV dynamic underwater cables market looks promising, with increasing investments in renewable energy projects, particularly offshore wind farms, expected to be a major growth driver. Additionally, advancements in cable technology, such as the integration of smart sensors for real-time monitoring, will further enhance market growth. The continued expansion of offshore oil and gas exploration, along with rising demand for robust underwater communication systems, will create lucrative opportunities for manufacturers and service providers in this market.
Key Market Study Points
Renewable Energy Projects: The surge in offshore wind energy installations is a primary driver of the market.
Technological Innovations: Advanced materials and smart technologies are being integrated into cable systems to enhance their performance and longevity.
Maintenance Solutions: Efficient maintenance and monitoring services are critical for reducing downtime and ensuring optimal cable performance.
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Competitive Landscape
The competitive landscape of the MV dynamic underwater cables market is characterized by the presence of several key players. Companies are focusing on strategic partnerships, mergers, and acquisitions to expand their market presence and improve their product offerings. Leading companies in this market include:
Prysmian Group
Nexans
NKT
Sumitomo Electric Industries
JDR Cable Systems
These players are continuously investing in R&D to develop innovative cable solutions that can withstand the dynamic underwater environment and provide reliable performance across multiple applications.
Recent Developments
Prysmian Group recently launched a new range of underwater cables with enhanced durability and resistance to harsh environmental conditions.
Nexans announced a partnership with a leading energy company to supply dynamic underwater cables for an offshore wind project in Europe.
JDR Cable Systems secured a contract to supply MV dynamic underwater cables for a major oil and gas exploration project in the North Sea.
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Overhead Power Cables Market 2022 Report, Trends, Growth & Forecast To 2030
The global Overhead power cables Market size is predicted to grow at a healthy CAGR between 2022- 2030, states the recent Market Research Future (MRFR) analysis. An overhead power cable, simply put, is a structure that is utilized in electric power transmissions & distribution for transmitting electrical energy along long distances. This comprises of one or above conductors, often multiple of three that is suspended by poles or towers. Fixtures, fittings, and conductors are the different types of overhead power cables that come in different voltage levels of low, medium, and high. Owing to its alluring features and plentiful benefits, overhead power cables have wide applications in residential, industrial, and commercial sectors.
Various factors are propelling the global overhead power cables market share. According to the recent MRFR report, such factors include increased initiatives by the government in smart grid technology & offshore power projects across the world, various upcoming renewable energy projects like offshore and onshore winds farms and offshore solar farms, and growing inclusion of renewable power sources. Additional factors propelling market growth include demand for uninterrupted and high-quality electricity, rapid urbanization and industrialization, and up-gradation of aging infrastructure.
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On the flip side, price trends, environmental & complex compliance procedures, volatile raw material prices, and delay in power project implementation are factors that may impede the global overhead power cables market growth over the forecast period. Besides, the ongoing COVID-19 outbreak has also cast its shadow on the market growth.
Key Players
Eminent players profiled in the global overhead power cables market report include-
Sumitomo Electric Industries Ltd.
Nanjing Daji Iron Tower Manufacturing Co. Ltd.
Shandong DingChang Tower Co. Ltd.
Prysmian S.p.A., Nexans S.A.
Kalpataru Power Transmission Ltd.
KEC International Ltd.
Zhejiang Shengda Steel Tower Co. Ltd.
Southwire Co. LLC
General Cable Technologies Corp.
Industry players have encompassed several strategies to stay at the forefront, such as mergers and acquisitions, partnerships, collaborations, joint ventures, and new product launches, to name a few.
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Market Segmentation
The MRFR report highlights an inclusive segmental analysis of the global overhead power cables market based on product type, voltage, and users.
By product type, the global overhead power cables market is segmented into fixtures, fittings, and conductors.
By voltage, the global overhead power cables market is segmented into low, medium, and high. Of these, the high voltage segment will lead the market over the forecast period.
By users, the global overhead power cables market is segmented into residential, industrial, and commercial.
Regional Analysis
Based on the region, the global overhead power cables market report covers the growth opportunities and recent trends across the Asia Pacific (APAC), North America, Europe, Latin America, & the Middle East and Africa (MEA). Of these, the Asia Pacific will have the lions share in the market over the forecast period. Increasing growth in transmission & distribution network in China & India, tremendous hike in demand for electricity, the constant increase in population, construction of new commercial, residential, and industrial complexes, and constant efforts to acquire maximum energy from renewable sources are adding to the global overhead power cables market growth in the region.
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The global overhead power cables market in the MEA is predicted to have the second-largest share over the forecast period. Huge investments in overhead power cables infrastructure in Saudi Arabia & other countries are adding to the global overhead power cables market growth in the region.
The global overhead power cables market in North America is predicted to have sound growth during the forecast period, and in Latin America as well as the Middle East and Africa is projected to hold steady growth during the forecast period.
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Oil & Gas AC Electric Motors Market Size 2022 Industry Insights by Global Share, Top Key Players, COVID-19 Impact, Regional Analysis and Forecasts to 2030
The global oil and gas AC electric motors market is expected to grow at a CAGR of 7.5% during the forecast period, 2018-2030.
Electric motors convert electrical energy into mechanical energy, especially for mass use. Motors that operate on AC power for energy consumption through the mechanism of electromagnetic induction are called AC electric motors. The motor consists of two main parts, an external stator with windings supplied with AC power to create a primary rotating magnetic field, and a second with an internal rotor attached to the output shaft which creates a secondary rotating magnetic field.
COVID-19 has the potential to have three major effects on the global economy: directly impacting production and demand, causing supply chain and market disruption, and having a financial impact on businesses and financial markets. Our analysts, who are monitoring the situation throughout the world, believe that the market would provide producers with lucrative opportunities following the COVID-19 dilemma. The purpose of the report is to provide a more detailed representation of the current circumstances, the economic slowdown, and the influence of COVID-19 on the total industry.
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Market Segmentation:
By product type:
Induction Electric Motors Synchronous Electric Motors
By application:
Onshore Offshore
By Key companies:
RockWell Yaskawa Hoyer GE Siemens ABB TMEIC Regal Beloit ATB Hitachi Allied Motion Schneider Electric WEG Toshiba Johnson Electric ARC System Nidec
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By region:
North America
Europe
Asia Pacific
Latin America
Middle East & Africa
Key benefits:
This market share and analysis is based on a comprehensive analysis of the main developments in the Oil & Gas AC Electric Motors industry.
The development strategies of major market players are included to understand the competitive scenario in the global Oil & Gas AC Electric Motors Market.
This study offers an in-depth analysis of market trends to clarify upcoming investment pockets.
It provides information on key engines, restraints, and capabilities, along with an analysis of their impact on market size.
Reasons to Purchase this Report:
The research contains a wealth of information, including market dynamics and opportunities for the forecast period.
Quantitative, qualitative, value (USD Million), and volume (Units Million) data are among the segments and sub-segments.
Data on demand and supply forces, as well as their impact on the market, may be found at the regional, sub-regional, and country levels.
In the last three years, the competitive landscape has included share of significant competitors, new advances, and strategies.
Companies that provide comprehensive products, important financial information, latest developments, SWOT analyses, and strategies.
Some Table of Content
Table of Content
1 Oil & Gas AC Electric Motors Market - Research Scope
1.1 Study Goals
1.2 Market Definition and Scope
1.3 Key Market Segments
1.4 Study and Forecasting Years
2 Oil & Gas AC Electric Motors Market - Research Methodology
2.1 Methodology
2.2 Research Data Source
2.2.1 Secondary Data
2.2.2 Primary Data
2.2.3 Market Size Estimation
2.2.4 Legal Disclaimer
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Ambient Energy Harvesting Market Future Adoption Overview 2030
Ambient Energy Harvesting
Conversion of ambient energy into usable electrical energy is known as ambient energy harvesting
Energy harvesting or scavenging methods are characterized depending upon power density. Currently, three types of energy harvesting methods are used: electrostatic (capacitive) energy harvesting, electromagnetic energy harvesting, and piezoelectric energy harvesting.
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Under electromagnetic energy harvesting, a magnetic field converts mechanical energy into electrical energy. In case of piezoelectric energy harvesting, the mechanical energy is converted into electrical energy by straining a piezoelectric material.
Ambient mechanical and thermal energy are classified as the largest forms of renewable energy. They also provide desired power for low-power electronic devices by using piezoelectric and pyro-electric materials.
Key Drivers of Global Ambient Energy Harvesting Market
Demand for ambient energy harvesting has been increasing across the globe owing to rise in automation and digitization across the globe. Demand for electricity is high owing to an increase in population across the globe. This is driving the global ambient energy harvesting market.
Rise in investments in renewable energy sources to reduce carbon footprint is anticipated to further boost the demand for ambient energy harvesting during the forecast period
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COVID-19 Impact Analysis
Governments of various countries have enforced nationwide lockdowns as a precautionary measure to curb the spread of the COVID-19 pandemic. This has disrupted planned ambient energy harvesting projects across the globe. The pandemic has disrupted the supply of new equipment and skilled labor in the market.
Key Development
On July 23, 2020, 8POWER was named by Gartner as a Cool Vendor in the May 2020 Cool Vendors in IoT Thingification report. The company’s innovative energy harvesting sensors are designed to help an industry improve efficiency, save money, and reduce carbon footprint.
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The Gartner recognition validates the company’s vision of helping water companies overcome resource limitations to diagnose issues with motorized assets early, thus reducing downtime and catastrophic failure.
Asia Pacific to Hold Major Share of Global Ambient Energy Harvesting Market
Based on region, the global ambient energy harvesting market can be segmented into North America, Europe, Asia Pacific, Latin America, and Middle East & Africa
Europe dominated the global ambient energy harvesting market in 2019, owing to rise in investments in the renewable sector such as solar, onshore & offshore wind energy, and geothermal energy. The region is implementing stringent environmental regulations to eliminate carbon emission by 2050.
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North America is estimated to hold prominent share of the global ambient energy harvesting market in the next few years. Demand for electricity has been rising due to implementation of smart city projects and IoT devices integrated with renewable energy sources
Asia Pacific was a highly attractive region of the global ambient energy harvesting market in 2019, owing to rise in urbanization and globalization in the region. The trend is projected to continue during the forecast period owing to increase in investments in renewable energy sources by countries such as China, India, South Korea, and Japan.
The market in Middle East & Africa and Latin America is anticipated to expand at a moderate pace during the forecast period. The industrial and renewable sector in these regions has been developing at a rapid pace. This is projected to augment the demand for ambient energy harvesting in the near future.
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Key Players Operating in Market
Leading players operating in the global ambient energy harvesting market include:
8power
CSIC – Consejo Superior de Investigaciones Científicas
Edyza Inc.
e-peas
Flexous Mechanisms B. V.
Nowi B.V.
G24 Power Limited
Climeworks
Infinite Power Solutions
Drayson Holdco 2 Limited
Teratonix
Energiot
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"Renewable Horizons: The Role of Wind Services in Sustainable Energy"
Introduction: Wind services play a crucial role in maintaining the optimal performance of wind turbines, ensuring the efficient generation of wind energy. With the global push towards renewable energy and the increasing number of onshore and offshore wind installations, the demand for wind services is on the rise. Key components such as gearboxes and generators are regularly tested to assess turbine performance, contributing to the overall growth of the market.
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Impact of COVID-19: The COVID-19 pandemic has affected the wind services market, causing delays in new wind power projects, disruptions in the supply chain, and challenges in labor availability. However, efforts to manage labor, independent operations, and strategic supply chain management are being employed to mitigate these challenges and ensure a resilient future.
Top Influencing Factors: Market Dynamics, Trends, Drivers, and Impact Analysis: The growing adoption of renewable energy, favorable government policies, and the increasing installation of wind turbines are key drivers for the demand in the wind services market. The shift towards renewable sources, particularly wind energy, is driven by environmental concerns, with wind services playing a critical role in maintaining efficient turbine operations. While wind energy has become a viable solution in areas without electricity grids, the high installation costs remain a significant hindrance to market growth.
Regional Insights: The Asia-Pacific region, led by China's significant offshore wind energy sector, is expected to witness substantial growth in the wind services market. China, with the highest number of wind energy turbine installations, is a major contributor to the market's expansion.
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Key Benefits of the Report:
Comprehensive Analysis:
In-depth analysis of the global wind services market, including current trends and future projections.
Market Drivers and Constraints:
Identification of key drivers, restraints, and opportunities, offering strategic insights.
Quantitative Market Analysis:
Quantitative analysis from 2020 to 2027, highlighting growth scenarios.
Competitive Analysis:
Porter’s five forces analysis illustrating buyer and supplier potency.
Detailed competitive intensity analysis for informed decision-making.
Wind Services Market: Global Opportunity Analysis and Industry Forecast, 2020–2027 Report Highlights:
By Type:
OEMs
Independent Service Providers
WFO (In-House)
Others
𝐄𝐧𝐪𝐮𝐢𝐫𝐲 𝐁𝐞𝐟𝐨𝐫𝐞 𝐁𝐮𝐲𝐢𝐧𝐠 : https://www.alliedmarketresearch.com/purchase-enquiry/9660
By Application:
Onshore
Offshore
Others
By Industry Vertical:
Chemical & Petrochemical
Oil & Gas
Energy & Power
Automotive
Food & Beverages
Healthcare
Others
By Region:
North America (U.S., Canada)
Europe (Germany, UK, France, Rest of Europe)
Asia-Pacific (China, Japan, India, Rest of Asia-Pacific)
Latin America (Brazil, Mexico, Rest of LATAM)
The Middle East
Africa
Key Market Players:
ABB, UL International GmbH, Suzlon Energy, INVISO Services, MISTRAS Group Inc., ASC Engineering Service, Midwest Underground Technology Inc., Senvion, Nordex, Aeronautica Wind Power, MFG Energy Services, Advanced Cleaning Technology, Enercon GmbH, General Electric, Upwind Solutions Inc., Intertek Group Plc., Cenergy International Services LLC, Vestas, Siemens GamesaRenewable Energy, Technical Wind Services Ltd.
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