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Integrated impacts of future electricity mix scenarios on select southeastern US water resources

机译:未来电力结构情景对美国东南部某些水资源的综合影响

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Recent studies on the relationship between thermoelectric cooling and water resources have been made at coarse geographic resolution and do not adequately evaluate the localized water impacts on specific rivers and water bodies. We present the application of an integrated electricity generation–water resources planning model of the Apalachicola/Chattahoochee/Flint (ACF) and Alabama–Coosa–Tallapoosa (ACT) rivers based on the regional energy deployment system (ReEDS) and the water evaluation and planning (WEAP) system. A future scenario that includes a growing population and warmer, drier regional climate shows that benefits from a low-carbon, electricity fuel-mix could help maintain river temperatures below once-through coal-plants. These impacts are shown to be localized, as the cumulative impacts of different electric fuel-mix scenarios are muted in this relatively water-rich region, even in a warmer and drier future climate.
机译:最近对热电冷却与水资源之间关系的研究是在粗略的地理分辨率下进行的,并且没有充分评估局部水对特定河流和水体的影响。我们介绍了基于区域能源部署系统(ReEDS)和水资源评估与规划的Apalachicola / Chattahoochee / Flint(ACF)和Alabama-Coosa-Tallapoosa(ACT)河流的综合发电-水资源规划模型的应用(WEAP)系统。未来的情况包括人口的增长和地区气候的变暖,干燥,这表明低碳,电力燃料混合物的收益可以帮助将河流温度保持在一次通过的燃煤电厂以下。这些影响被证明是局部的,因为在这个相对富水的地区,即使在更温暖和更干燥的未来气候下,不同电力混合燃料情景的累积影响也被减弱了。

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