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hatrack

(59,583 posts)
Wed Nov 27, 2019, 10:14 AM Nov 2019

Rising River Temperatures Another Growing Problem For US Generation, Grid Stability

An inevitable rise in river temperatures from global warming will force increasing numbers of coal, nuclear and natural gas generation plants to curtail operations, adding up to $143 billion in additional grid infrastructure investment that could be needed by 2050, according to a new study by university and national laboratory researchers. The computer model results call for more renewable wind and solar power, which are not water-dependent, with backup from new, efficient natural gas power plants, both to limit water shortages and to meet goals for carbon reduction from power plants, the research concluded.

"This analysis is the capstone to a long series of studies that this research team has produced to analyze unique climate-water-environment interactions in the context of long-term energy planning under climate change," said Charles Vörösmarty, a co-author of the study and director of the City University of New York's environmental sciences project. CUNY partnered with the Energy Department's National Renewable Energy Laboratory and Sandia National Laboratories on the research.

EDIT

The study team began with a base case projection of U.S. power grid development from the Energy Department's Energy Information Administration, which assumes no major new policy action, then used computer modeling to assess several futures with different pathways, including deep reductions in power plant carbon dioxide emissions from renewable power growth, and continued major power output from nuclear and coal plants. They ran the model further to include analysis of how rising river temperatures and decreases in water flows could hamper operations of coal, gas and nuclear plants that rely on outside water supply to keep plants from overheating, in effect.

The detail of river and weather data permitted the researchers to investigate water supply issues at individual power plants across the United States. A key limitation is current regulation that forbids discharges of power plant cooling water that raises river water temperatures above permitted levels. If river water is too hot when it enters, it will be over limits when it is discharged, Miara said. Power plants that use cooling towers to pull heat away from operating systems may also lose effectiveness if climate change pushes humidity too high around plant sites, he added.

EDIT

https://www.eenews.net/stories/1061647371

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