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Effects of urbanization and global climate change on regional climate in the Pearl River Delta and thermal comfort implications

机译:城市化与全球气候变化对珠江三角洲区域气候的影响及热舒适含义

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摘要

Urbanization and climate change are affecting regional climate; therefore, thermal comfort should be fully understood, especially from a public health perspective. We applied a climate model driven by a combination of land-cover development and two representative concentration pathways (RCP4.5 and RCP8.5) to predict composite climatic adjustments in the Pearl River Delta (PRD) in China. Our findings showed that a 10% increase in urban land cover can cause a 0.11 K increase in surface temperature in PRD, and urban temperature will rise by 0.15-0.21 K because of global climate change alone. We found that urbanization has marginal effects on thermal comfort despite increasing surface temperature in PRD. Moreover, global climate change will increase the frequency at which temperatures exceed critical temperatures reported in the literature and the extreme heat stress level (95th percentile of baseline year). Our findings offer a scientific basis for understanding heat-related health risk and climate change adaptation in urban areas.
机译:城市化和气候变化正在影响区域气候;因此,应完全理解热舒适性,尤其是公共卫生视角。我们应用了由陆地覆盖发展和两种代表浓度通路(RCP4.5和RCP8.5)的组合驱动的气候模型,以预测中国珠江三角洲(珠三角)的综合气候调整。我们的研究结果表明,城市覆盖量增长10%可导致PRD的表面温度增加0.11克,由于全球气候变化,城市温度将增加0.15-0.21 k。我们发现,尽管PRD的表面温度增加,城市化对热舒适性具有边际作用。此外,全球气候变化将增加温度超过文献中报告的温度的频率和极端热应力水平(基准年95百分位数)。我们的调查结果为了解与城市地区的热相关的健康风险和气候变化适应提供科学依据。

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