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Modeling the climatic effects of urbanization in the Beijing-Tianjin-Hebei metropolitan area

机译:京津冀都市圈城市化的气候效应模拟

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摘要

In this analysis, the weather research and forecasting model coupled with a single-layer urban canopy model is used to simulate the climatic impacts of urbanization in the Beijing-Tianjin-Hebei metropolitan area, which has experienced significant expansion in its urban areas. Two cases examining current landscapes and the sensitivity test of urban areas replaced by cropland have been carried out to explore the changes in the surface air and atmospheric boundary structure. The impact of urbanization on annual mean surface air temperature has been found to be more than 1℃ in urban areas, and the maximum difference is almost 2℃. The change in near-surface level temperature is most pronounced in winter, but the area influenced by urbanization is slightly larger in summer. The annual mean water vapor mixing ratio and wind speed are both reduced in the urban area. The effect of urbanization can only heat the temperature inside the urban boundary layer, below 850 hPa. The modeling results also indicate that the underlying surface thermal forces induced by the "urban heat island" effect enhance vertical air movement and engenders a convergence zone over urban areas. The convergence at low level together with the moisture increases in the layer between 850 and 700 hPa triggered the increase of convective precipitation.
机译:在此分析中,将天气研究和预报模型与单层城市雨棚模型相结合,用于模拟京津冀大都市区城市化对城市化的气候影响。为了调查地表空气和大气边界结构的变化,已经进行了两次检查当前景观的案例和被农田取代的城市地区的敏感性测试。在城市地区,城市化对年平均地面气温的影响已超过1℃,最大差值接近2℃。冬季,近地表温度的变化最为明显,但夏季,受城市化影响的面积略大。市区的年平均水蒸气混合比和风速都降低了。城市化的影响只能加热低于850 hPa的城市边界层内部的温度。模拟结果还表明,由“城市热岛”效应引起的底层表面热力增强了垂直空气流动,并在城市区域形成了一个收敛区域。在850至700 hPa之间,低水平的会聚以及水分的增加触发了对流降水的增加。

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  • 来源
    《Theoretical and applied climatology》 |2013年第4期|377-385|共9页
  • 作者单位

    Key Laboratory of Regional Climate-Environment for Temperate East Asia, Institute of Atmospheric Physics,Chinese Academy of Sciences, Beijing 100029, China,Graduate School of the Chinese Academy of Sciences,Beijing, China;

    Institute of Geographical Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, China;

    Key Laboratory of Regional Climate-Environment for Temperate East Asia, Institute of Atmospheric Physics,Chinese Academy of Sciences, Beijing 100029, China,State Key Laboratory of Earth Surface Processes and Ecology Resource, Beijing Normal University, Beijing, China;

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