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2021 North American heatwave amplified by climate change-driven nonlinear interactions

机译:2021 年北美热浪被气候变化驱动的非线性相互作用放大

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Heat conditions in North America in summer 2021 exceeded previous heatwaves by margins many would have considered impossible under current climate conditions. Associated severe impacts highlight the need for understanding the physical drivers of the heatwave and relations to climate change, to improve the projection and prediction of future extreme heat risks. Here, we find that slow- and fast-moving components of the atmospheric circulation interacted, along with regional soil moisture deficiency, to trigger a 5-sigma heat event. Its severity was amplified -40% by nonlinear interactions between its drivers, probably driven in part by land-atmosphere feedbacks catalysed by long-term regional warming and soil drying. Since the 1950s, global warming has transformed the peak daily regional temperature anomaly of the event from virtually impossible to a presently estimated similar to 200-yearly occurrence. Its likelihood is projected to increase rapidly with further global warming, possibly becoming a 10-yearly occurrence in a climate 2 degrees C warmer than the pre-industrial period, which may be reached by 2050.
机译:在2021年夏天热条件在北美超过先前的热浪利润很多认为是不可能的在目前的气候吗条件。需要理解物理驱动程序热浪和气候变化的关系,改进的投影和预测未来极端高温的风险。缓慢,快速移动的组件大气环流相互作用,以及区域土壤水分不足,引发σ5热事件。-40%通过非线性相互作用司机,可能部分源于长期land-atmosphere反馈催化了地区气候变暖与土壤干燥。1950年代,全球变暖已经改变了高峰的日常区域温度异常事件从目前几乎不可能估计类似于200年发生。可能性预计将迅速增加进一步的全球变暖,可能成为一个起发生在气候2摄氏度温暖的比前工业时期,这可能在2050年达成。

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