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Impact of climate and population changes on the increasing exposure to summertime compound hot extremes

机译:气候和人口对夏季复合热极端的日益暴露的影响

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Attributing the changes in the population exposure to global compound hot extremes, which combine daytime-nighttime hot extremes with more severe impacts, is essential for climate change adaptation. Based on daily temperature data from the Coupled Model Intercomparison Project phase 6 (CMIP6) and population data, we estimate the changes in population exposure for two future periods under three scenarios of emission and socio-economic development at global and continental scales, and assess the contributions from climate and population changes. We find that the spatial patterns of exposure to compound hot extremes are similar for different periods and scenarios, and regions with high exposure are mainly located over East Asia, South Asia, Europe, and parts of eastern USA and Africa. The exposure shows an increase from baseline (1980-2014) to mid- and late 21st century periods (2021-2055 and 2056-2090) in most regions worldwide. Under the business-as-usual scenario (SSP2-4.5), the global exposure increases by -19-fold during the late 21st century, and Africa shows the largest increase while Europe shows the smallest. Early (SSP1-2.6) and no (SSP5-8.5) actions of mitigation would relieve and aggravate the increase rate, respectively. For about 78%-87% of the global land areas, the changes in exposure are mainly caused by climate change (accounting for >69%), followed by the interaction effect (accounting for -29%) that refers to synergistic changes in climate and population. In parts of mid- to high-latitude regions, the exposure is smaller than expected due to opposite effects of climate change and population change.
机译:将人口暴露的变化归因于全球化合物热极端的变化,将白天夜间热极端与更严重的影响相结合,对气候变化适应至关重要。基于来自耦合模型的日常温度数据,来自耦合模型的互联项目阶段6(CMIP6)和人口数据,我们在全球和大陆尺度的三种情况下,在三个排放和社会经济发展方案下估计了两个未来期间的人口暴露的变化,并评估了气候和人口的贡献变化。我们发现,随着不同的时期和场景,暴露于复合热极端的空间模式,高曝光的区域主要位于美国东方和非洲东部的东亚,南亚,欧洲和部分地区。曝光显示在全球大多数地区的21世纪中期和21世纪后期(2021-2055和2056-2090)中,从基线(1980-2014)增加。根据业务上的业务场景(SSP2-4.5),在21世纪后期,全球曝光率增加-19倍,非洲显示最大的增加,而欧洲则显示最小。早期(SSP1-2.6)和不(SSP5-8.5)缓解行动将分别缓解和加剧增加率。为约78%-87的全球陆地面积%,在曝光的变化主要是由于气候变化(占> 69%),其次是指在气候变化协同的相互作用效应(占29%)和人口。在中到高纬度地区的部分地区,由于气候变化和人口变化的相反,暴露的曝光小于预期。

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