#electricity transmission
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rjzimmerman · 5 months ago
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Excerpt from this story from Canary Media:
Smart Wires has spent more than a decade putting its grid-boosting technology to the test in Australia, South America, and Europe. Now, the Durham, North Carolina–based company is finally getting a crack at projects in the U.S., backed by federal funds and policies supporting technologies that could unlock gigawatts of capacity on the country’s existing power grids.
In October, Smart Wires was selected for two projects that will receive a combined $60 million in U.S. Department of Energy funding. They will be the first large-scale U.S. deployments of Smart Wires’ SmartValve power flow control devices, which can digitally increase resistance on individual power lines in a transmission network to redirect power onto underutilized lines.
These advanced power flow control (APFC) systems are among a set of so-called grid enhancing technologies — GETs for short — that could play an important role in mitigating grid bottlenecks. These logjams block wind and solar farms from being connected to the grid, causing billions of dollars in congestion costs and making the grid less reliable during summer heatwaves and winter storms.
But U.S. transmission utilities, which earn money by building new infrastructure rather than making their existing transmission networks run more efficiently, have lagged other countries in deploying these technologies. That lag has spurred the Biden administration and some states to institute a set of policies to speed GETs deployments to help meet clean energy and grid reliability goals.
At an event last month to introduce a new grid modernization collaboration between the White House and 21 states, Energy Secretary Jennifer Granholm called GETs ​“the lowest-hanging fruit for being able to get additional capacity on the grid — and for the least amount of money.”
Ted Bloch-Rubin, Smart Wires’ director of business development for the Americas, was at last month’s White House event. ​“Secretary Granholm said what we’ve been trying to say for a long time,” he told Canary Media in an interview last month. ​“This is low-hanging fruit. Let’s get on it.”
Smart Wires’ U.S. efforts are among 58 projects across 44 states targeted for a total of $3.5 billion in DOE grid modernization grants from a program created by the 2021 Bipartisan Infrastructure Law.
One of the company’s two projects is with transmission utility Vermont Electric Power Co. (VELCO) and the Electric Power Research Institute (EPRI), and targets a key interconnection for moving wind and hydro power between New York and New England.
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soniez · 6 months ago
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nepalenergyforum · 18 days ago
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ADB Supports Nepal in Modernizing Electricity Transmission and Distribution
MANILA, PHILIPPINES (5 November 2024) — The Asian Development Bank (ADB) has approved a $311 million loan to improve and modernize electricity transmission and distribution infrastructure in Nepal. “Upgrading and modernizing Nepal’s electricity transmission and distribution facilities and infrastructure is essential to its sustainable growth and development,” said ADB Principal Energy Specialist…
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peninsulaisms · 18 days ago
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when i was a lil kid i thought these were the angels my nanna always told me were watching over me
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electronalytics · 1 year ago
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Single Core Land High Voltage Underground Cable Market Outlook on Key Growth Trends, Factors and Forecast 2032
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The Single Core Land High Voltage Underground Cable Market refers to the market for high voltage cables designed for underground power transmission and distribution systems. Here is an overview, key trends, and points related to the demand in this market:
Overview:
High voltage underground cables are used to transmit electrical power over long distances, connecting power generation plants to substations or delivering power to urban areas. These cables are typically used for high voltage applications, including interconnections between substations, urban distribution networks, and underground power transmission.Single core cables are designed with a single conductor surrounded by insulation and protective layers to ensure safe and efficient power transmission. High Voltage Cables and Accessories Market - The market size is expected to reach USD 60.91 billion by 2029 at a CAGR of 6.59 percent during the Forecast period.
Key Trends:
Growing Renewable Energy Integration: The increasing deployment of renewable energy sources, such as wind and solar power, has led to the need for efficient underground transmission of power. Single core high voltage cables play a crucial role in connecting renewable energy generation systems to the grid, facilitating the integration of clean energy sources.
Urbanization and Infrastructure Development: Rapid urbanization and infrastructure development in various regions have fueled the demand for reliable and efficient underground power transmission. Single core high voltage cables are preferred in urban areas where space limitations and aesthetic considerations make underground installation more suitable than overhead lines.
Focus on Energy Efficiency: Single core high voltage underground cables are designed to minimize energy losses during power transmission. As energy efficiency becomes increasingly important in power transmission and distribution systems, the demand for high-quality cables that can ensure efficient power transfer is expected to rise.
Technological Advancements: Ongoing advancements in cable design, insulation materials, and manufacturing processes are improving the performance and reliability of single core high voltage underground cables. These advancements include the development of new insulation materials with higher thermal and electrical properties, as well as improved cable installation techniques.
Demand Drivers and Key Points:
Increasing electricity demand: As the global demand for electricity continues to rise, the need for efficient power transmission and distribution systems, including underground cables, increases.
Urbanization and space constraints: In densely populated urban areas, underground power transmission is often preferred due to limited available space and aesthetic considerations.
Environmental considerations: Underground cables have less visual impact and are less susceptible to weather-related disruptions, making them an environmentally friendly option.
Grid resilience and reliability: Single core high voltage underground cables contribute to grid resilience by reducing the vulnerability to weather events, such as storms and high winds, and enhancing the overall reliability of the power distribution network.
Government initiatives and regulations: Government policies promoting underground power transmission, renewable energy integration, and grid modernization drive the demand for single core high voltage underground cables.
We recommend referring our Stringent datalytics firm, industry publications, and websites that specialize in providing market reports. These sources often offer comprehensive analysis, market trends, growth forecasts, competitive landscape, and other valuable insights into this market.
By visiting our website or contacting us directly, you can explore the availability of specific reports related to this market. These reports often require a purchase or subscription, but we provide comprehensive and in-depth information that can be valuable for businesses, investors, and individuals interested in this market.
“Remember to look for recent reports to ensure you have the most current and relevant information.”
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Market Segmentations:
Global Single Core Land High Voltage Underground Cable Market: By Company
• Prysmian Group
• Nexans
• Southwire
• Hengtong Group
• Furukawa Electric
• Sumitomo Electric Industries
• Qrunning Cable
• LS Cable & System
• Taihan Electric
• Riyadh Cable
• NKT Cables
Global Single Core Land High Voltage Underground Cable Market: By Type
• HV
• EHV
Global Single Core Land High Voltage Underground Cable Market: By Application
• Direct Current
• Alternative Current
Global Single Core Land High Voltage Underground Cable Market: Regional Analysis
All the regional segmentation has been studied based on recent and future trends, and the market is forecasted throughout the prediction period. The countries covered in the regional analysis of the Global Single Core Land High Voltage Underground Cable market report are U.S., Canada, and Mexico in North America, Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe in Europe, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), and Argentina, Brazil, and Rest of South America as part of South America.
 Visit Report Page for More Details: https://stringentdatalytics.com/reports/single-core-land-high-voltage-underground-cable-market/6729/
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• To obtain insights into industry trends and dynamics, including market size, growth rates, and important factors and difficulties. This study offers insightful information on these topics.
• To identify important participants and rivals: This research studies can assist companies in identifying key participants and rivals in their sector, along with their market share, business plans, and strengths and weaknesses.
• To comprehend consumer behaviour: these research studies can offer insightful information about customer behaviour, including preferences, spending patterns, and demographics.
• To assess market opportunities: These research studies can aid companies in assessing market chances, such as prospective new goods or services, fresh markets, and new trends.
• To make well-informed business decisions: These research reports give companies data-driven insights that they may use to plan their strategy, develop new products, and devise marketing and advertising plans.
In general, market research studies offer companies and organisations useful data that can aid in making decisions and maintaining competitiveness in their industry. They can offer a strong basis for decision-making, strategy formulation, and company planning.
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godlovescowgirls · 23 days ago
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their bodies in the dark ♡
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vivekguptahal · 2 years ago
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Hitachi’s Innovative Power Transmission Technology Ensures Clean Energy for NY Homes
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Making long-distance energy transfer a reality
Decarbonization goals require the government to work closely with the private sector to develop effective solutions for clean energy transmission. These public-private partnerships, such as the ambitious project in New York leveraging Hitachi’s high-voltage direct current (HVDC) technology, is essential if objectives at the state and local levels are to be achieved.
However, though emerging tools and technologies aim to reduce carbon emissions, the problem of electricity transmission has been a major obstacle.  The project in New York is setting the bar for public-private partnerships in the energy sector with Hitachi’s unique technology and is making long-distance energy transfer a reality.
Renewable energy transmission to power New York
The state of New York’s Climate Leadership and Community Protection Act has set a target to be powered by 70% renewable energy by 2030^ . Historically, the state has been reliant on traditional and dispatchable energy sources like gas and coal. But most renewable energy sources must be held in reserve until needed. Accessing renewable energy on demand requires a means of storing power for later use.
Initially, the challenge was to find a suitable renewable power reservoir that was well-positioned for the transfer of renewable energy to and from the state. As Quebec relies mostly on hydropower generation, its infrastructure and capacity provided renewable energy storage capabilities to its neighbor. Next, an environmentally responsible means of bringing clean hydropower from Quebec to New York City was facilitated by Hitachi’s HVDC technology.
As the technology powers the Champlain Hudson Power Express (CHPE) link between Quebec and New York City, it deploys long distances underground and underwater, to bypass legacy transmission bottlenecks and meet the growing demand for clean power. Using Hitachi’s HVDC Light technology, CHPE will transfer up to 1,250 megawatts of electricity, enough to power 1 million New York homes.
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Hitachi’s HVDC for clean energy transmission
As a New York City mandate requiring the installation of electric appliances comes into force, demand for electricity in the city will grow. With HVDC Light’s ability to promote resource diversity to overall resource reliability, the CHPE system will be better equipped to meet the increase in electricity consumption.
HVDC Light further supports the state’s climate goals by maintaining a low environmental impact, and its converter stations likewise have a small carbon footprint. The CHPE project is expected to create 1,400 jobs from the construction phase, bringing $50 billion in economic benefits to New York state. The impact of the project is projected to be equal to removing 44% of passenger vehicles from the city. ^^
Hitachi’s work on the CHPE system reflects the company’s commitment to deploying technology to achieve social good by making it feasible to achieve critical sustainability goals.
Discover how Hitachi is driving social innovation and digital transformation in Energy:
Sources
^ https://www.governor.ny.gov/news/governor-hochul-announces-new-framework-achieve-nation-leading-six-gigawatts-energy-storage#:~:text=Today's%20announcement%20supports%20the%20Climate,zero%2Demission%20electricity%20by%202040. 
^^ PA Knowledge Limited, “Champlain Hudson Power Express,” May 10, 2021, https://chpexpress.com/wp-content/uploads/2021/05/PA-Consulting-Tier-4-REC-Bid-Report_05-10-2021.pdf
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created by beings of higher power. carrying messages on one linear path. are transmission towers angels?
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marysmirages · 2 years ago
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Once upon a summer evening (2023)
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pigswithwings · 1 year ago
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you're electrifying to me!
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biologist4ever · 2 months ago
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In the neuron, a protective covering called myelin insulates the axon and increases the speed of electrical communication along the length of the neuron
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rjzimmerman · 3 months ago
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Excerpt from this story from RMI:
Today’s US electrical grid looks less like an organized grid and more like an unfinished puzzle. Fortunately, as we plan for growing power demand, RMI emerges as a leader in the pursuit of solutions. With near-term stopgaps to optimize existing grid infrastructure and long-term solutions to grow the grid, build workforce capacity, and promote policy that encourages transmission planning among utilities, RMI is putting the pieces together.
The US grid faces incredible challenges. Industry forecasts predict that electricity demand will grow significantly, driven by AI data centers, industrial expansion, and the rise of electric vehicles and heat pumps. Fortunately, on the generation side, vast numbers of clean energy projects have asked to connect to the grid to help meet any rise in demand. Unfortunately, sluggish interconnection processes are delaying the urgently needed generation, with more than 2.6 terawatts (TW) of clean energy projects languishing in the interconnection traffic jam.
That far exceeds the 1.25 TW of electricity generation currently on the US grid. Why the long wait? New projects looking to connect to the grid must undergo a series of complex impact studies before they can connect. This can take up to five years. There is also a lack of electric transmission to carry the power from clean energy projects to where that energy will be used. Simply put, the model is inefficient and not designed for the energy transition. But RMI is helping change that.
Maximizing Grid Efficiency: RMI is working with partners to leverage cutting-edge grid-enhancing technologies (GETs) to streamline interconnection capacity now. GETs are innovative technologies that act as energy efficiency solutions for the grid. They can adjust the carrying capacity of transmission lines to reflect real-time conditions, re-route power around congested areas, and optimize power flows. We’re working with utilities and businesses in PJM, the largest grid operator in the country, to modernize and expedite interconnection procedures, a vital step in the journey toward a sustainable energy future. We have published or contributed to multiple reports on interconnection and GETs, providing evidence for the value of GETs in enhancing interconnection and transmission planning at the Federal Energy Regulatory Commission (FERC), the White House, and in PJM stakeholder meetings to make real changes.
Connecting Clean Energy to the Grid Faster and Cheaper: The lengthy interconnection process slows the expansion of our energy systems during a crucial time for growth. But utilities can bypass the process by siting new clean generation at the same point of interconnection as existing or retiring generators. Using the existing fossil assets’ interconnection rights can cut the time down to less than one year. This clean repowering, or “the express lane of energy reinvestment,” offers the potential for 250 GW of new renewable energy projects without transmission upgrades and translates to an average savings of US$12.7 billion a year for the next ten years. New RMI research and analysis show the interconnection processes and Inflation Reduction Act incentives that enable this opportunity and the geographies with the most potential.
Planning Power Transmission: On May 13, 2024, FERC released Order 1920, a landmark rulemaking requiring each of the transmission planning regions in the United States to undergo long-term transmission planning. Order 1920 tackles regulatory hurdles that are slowing the deployment of transmission lines needed to deliver affordable, reliable electricity and prevent power outages as energy demand increases. RMI’s articles, submitted comments, and presentations helped influence this transformational policy.
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electricalpylon · 9 months ago
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If we understand the machine as a conduit, and the divine as the power source, the fusion of the two creates the angel, when combining the angel with the the rot (the incorporation of blight) you get the electrical pylon, a conduit for immense power that carries a message linearly through massive structures that both dominate and become the landscape
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coulson-is-an-avenger · 2 years ago
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Starset really is the funniest band ever, they didn’t establish a fanbase before going off with their lore like most do, they dropped one (1) single in 2013 and then a year later, with no fame and one established song, walked up to the music scene like “hey we’re a secret society with a scifi message about a dystopian future, the only answer is to make science accessible and to fight against fascism and rock out” and then dropped the greatest cinematic rock album in history. unbelievable
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waanderlussttt · 11 days ago
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was very sad today
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whoresomewhining · 21 days ago
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