Are grids are the new pipelines? https://ow.ly/lmO850SX3UB To align with net-zero goals, the world’s grids must double in length by 2050. But with that, power grids will have to get bigger and smarter to accommodate the rise of renewables and bi-directional electricity flows with consumers. Learn more >> https://ow.ly/lmO850SX3UB
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From rerouting power around faults to supporting higher volumes of intermittent renewables, here’s how grid modernization will support the energy transition: http://bit.ly/3ZrUN6C #EnergyTransition #GridModernization
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From rerouting power around faults to supporting higher volumes of intermittent renewables, here’s how grid modernization will support the energy transition: http://bit.ly/3ZrUN6C #EnergyTransition #GridModernization
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From rerouting power around faults to supporting higher volumes of intermittent renewables, here’s how grid modernization will support the energy transition: http://bit.ly/3ZrUN6C #EnergyTransition #GridModernization
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From rerouting power around faults to supporting higher volumes of intermittent renewables, here’s how grid modernization will support the energy transition: http://bit.ly/3ZrUN6C #EnergyTransition #GridModernization
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What impact is the transition from conventional generation to greater levels of renewables having on the electricity grid? Discover more https://lnkd.in/eGQZ459j
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The grid of the future is being shaped by the strain of integrating new resources brought into play by decarbonizing industry, utilities, and buildings. Intermittent renewables make up most new capacity additions, while dispatchable power sources like coal and gas are slowly phasing out, creating a sizable opportunity for energy storage to provide both reliability services and energy capacity to the grid. Learn more in our upcoming webinar: https://lux.works/49Aiu1g
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How can we rethink the current electricity grid market design to deliver a successful and orderly energy transition, and unlock significant value? 🔋 In many regions, renewables could become the main source of power in the next decade. However, without careful planning, this could cause a significant mismatch in the hourly supply of, and demand for, electricity. By 2030, the renewable peak capacity in the European Union could exceed the average demand of 320 gigawatts. Navigating this supply-demand mismatch is crucial to accelerating the global decarbonization journey. Find out more here: https://mck.co/3V0NOC9 #McKinseyInsights
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Check out my latest #blog post discussing how renewables are essential to climate change, how the grid is holding back the transition, and how #DLR can alleviate the grid bottleneck
🌍 What does integrating more #RenewableEnergy into the grid look like? 🌞 It's more than just deploying solar panels and wind turbines. It involves navigating through complex processes of studying, permitting, and implementing interconnection upgrades, which often pose significant challenges and delays. ⚡️ However, there's a game-changing solution: Dynamic Line Ratings (DLRs). DLRs serve as a nimble and accessible tool, alleviating congestion on existing transmission lines while larger infrastructure developments catch up to demand. 🔗 Learn more on our blog: https://hubs.li/Q02ppzfp0
How Dynamic Line Ratings Accelerate Renewable Energy Integration
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The que to interconnect renewables to the grid is something to behold.
Chart: The US clean energy backlog is getting bigger and bigger
canarymedia.com
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In case you missed it last week, here’s a sneak peak of our new report “The Energy Lowdown 24”. In it, we dive deep into what has been impacting rates, what businesses are spending, the renewables race, the role of technology and what’s likely to happen next 📈 Download the full report here: https://buff.ly/4gAvyrZ
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