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A multi-reservoir model for projecting drought impacts on thermoelectric disruption risk across the Texas power grid

机译:一种用于投射干旱影响的多水库模型,对德克萨斯州电网热电破坏风险的影响

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摘要

Thermoelectric power plants often depend on multipurpose reservoirs to supply cooling water. Although reservoirs buffer natural hydrologic variability, severe droughts can deplete storage below critical thresholds, or to levels at which the effluent water temperature exceeds the environmental compliance requirement for cooling. This study explores the effects of projected climate change and drought on water storage at 30 major reservoirs in Texas. These reservoirs collectively provide cooling water for about two thirds of thermoelectric power capacity in the Electric Reliability Council of Texas (ERCOT) power grid. Multi-ensemble runoff projections generated from eleven downscaled hydroclimate simulations are mapped to key watersheds to create spatially correlated multi-reservoir inflow sequences. These data are used to drive reservoir storage simulations, which are linked to a metric of & ldquo;capacity-at risk & rdquo; using critical reservoir thresholds. We find that projected impacts of climate change are mixed, with results indicating an increase in the occurrence of thermal disruption under only half of climate models. A critical threshold of 30% storage volume-applied to all reservoirs-results in disruption to about one fifth of ERCOT thermal generation during the most severe projected droughts. The study highlights an important role for detailed reservoir behavior simulations for capturing the effects of drought and climate change on thermoelectric plant performance. (c) 2021 Elsevier Ltd. All rights reserved.
机译:热电发电厂通常取决于多用途储层来供应冷却水。虽然储层缓冲液天然水文变异性,但严重的干旱可以耗尽低于临界阈值的储存,或者流出水温超过环境合规要求的水平。本研究探讨了德克萨斯州30个主要水库储水的投影气候变化和干旱的影响。这些水库集体为德克萨斯州(ERCOT)电网电力可靠性委员会中的大约三分之二的热电能力提供了冷却水。从11个次要水池模拟产生的多集合径流投影映射到键流域,以产生空间相关的多储层流入序列。这些数据用于驱动储库存储模拟,该储存模拟与&ldquo的指标相关联;容量风险”使用关键储库阈值。我们发现将气候变化的投影影响混合,结果表明在仅在气候模型的一半下发生热破坏的发生。 30%存储体积的临界阈值 - 适用于所有储层 - 导致最严重的预测干旱期间约五分之一的艾古热发电。该研究强调了对捕获干旱和气候变化对热电厂性能影响的详细水库行为模拟的重要作用。 (c)2021 elestvier有限公司保留所有权利。

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