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Compound climate events transform electrical power shortfall risk in the Pacific Northwest

机译:复合气候事件改变了西北太平洋地区的电力短缺风险

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摘要

Power system reliability is sensitive to climate-driven variations in both energy demand and water availability, yet the combined effect of these impacts is rarely evaluated. Here we show that combined climate change impacts on loads and hydropower generation may have a transformative effect on the nature and seasonality of power shortfall risk in the U.S. Pacific Northwest. Under climate change, potential shortfall events occur more readily, but are significantly less severe in nature. A seasonal reversal in shortfall risk occurs: winter shortfalls are eradicated due to reduced building heating demands, while summer shortfalls multiply as increased peak loads for day-time cooling coincide with impaired hydropower generation. Many of these summer shortfalls go unregistered when climate change impacts on loads and hydropower dispatch are analyzed in isolation—highlighting an important role of compound events.
机译:电力系统的可靠性对气候驱动的能源需求和水供应变化敏感,但很少评估这些影响的综合影响。在这里,我们表明,气候变化对负荷和水力发电的综合影响可能会对美国西北太平洋地区电力短缺风险的性质和季节性产生变革性影响。在气候变化下,潜在的短缺事件更容易发生,但本质上不那么严重。缺水风险出现季节性逆转:由于建筑物供暖需求减少,冬季缺水被根除,而夏季缺水则随着日间制冷高峰负荷的增加与水力发电的减少而倍增。当单独分析气候变化对负荷和水电调度的影响时,许多这些夏季短缺都将消失,这突出了复合事件的重要作用。

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