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Why the U.S. grid's extreme heat problem is changing

First publishedAug 19, 09:15 UTC
Last updatedAug 19, 10:43 UTC · 14m ago
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Why the U.S. grid's extreme heat problem is changing
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Solar energy and batteries are making it easier for utilities to meet surging electricity demand during extreme heat, but prolonged high temperatures are exposing other vulnerabilities in the grid.Why it matters: Electricity demand rises as air conditioners work harder in extreme heat, while high temperatures can make parts of the system less efficient and put additional stress on equipment.The big picture: Climate change is extending periods of extreme heat just as electrification and data centers add new loads, leaving parts of the grid working harder for longer.Between the lines: Michael Webber, a mechanical engineering professor at the University of Texas at Austin, tells Axios that grid operators face a "triple whammy" under extreme heat, as air conditioners, transmission lines and power plants all become less efficient."At the times we need the grid the most is when every single component in the grid is less efficient ... but also more fragile, and then we run it more," says Webber, who's also CTO of Energy Impact Partners, a clean-tech venture capital firm.A 2018 study Webber co-authored found that power plants, air conditioners and transmission systems tend to operate more efficiently at cooler temperatures.

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Solar energy and batteries are making it easier for utilities to meet surging electricity demand during extreme heat, but prolonged high temperatures are exposing other vulnerabilities in the grid.Why it matters: Electricity demand rises as air conditioners work harder in extreme heat, while high temperatures can make parts of the system less efficient and put additional stress on equipment.The big picture: Climate change is extending periods of extreme heat just as electrification and data centers add new loads, leaving parts of the grid working harder for longer.Between the lines: Michael Webber, a mechanical engineering professor at the University of Texas at Austin, tells Axios that grid operators face a "triple whammy" under extreme heat, as air conditioners, transmission lines and power plants all become less efficient."At the times we need the grid the most is when every single component in the grid is less efficient ... but also more fragile, and then we run it more," says Webber, who's also CTO of Energy Impact Partners, a clean-tech venture capital firm.A 2018 study Webber co-authored found that power plants, air conditioners and transmission systems tend to operate more efficiently at cooler temperatures. Zoom in: It's not just hotter days that matter. Webber says hot nights can prevent equipment from getting a chance to cool down.In Texas, "it's not so much that it's 105°F during the day; it's that it only cools to 78°F at night," he says.

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In brief
What's the story?
Solar energy and batteries are making it easier for utilities to meet surging electricity demand during extreme heat, but prolonged high temperatures are exposing other vulnerabilities in the grid.Why it matters: Electricity demand rises as air conditioners work harder in extreme heat, while high temperatures can make parts of the system less efficient and put additional stress on equipment.The big picture: Climate change is extending periods of extreme heat just as electrification and data centers add new loads, leaving parts of the grid working harder for longer.Between the lines: Michael Webber, a mechanical engineering professor at the University of Texas at Austin, tells Axios that grid operators face a "triple whammy" under extreme heat, as air conditioners, transmission lines and power plants all become less efficient."At the times we need the grid the most is when every single component in the grid is less efficient ... but also more fragile, and then we run it more," says Webber, who's also CTO of Energy Impact Partners, a clean-tech venture capital firm.A 2018 study Webber co-authored found that power plants, air conditioners and transmission systems tend to operate more efficiently at cooler temperatures.
How widely is it covered?
1 outlet, average source rating 7.0/10.
When was it last updated?
14m ago.
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    Why the U.S. grid's extreme heat problem is changing

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