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Impact of urbanization on rainfall of different strengths in the Beijing area

机译:城市化对北京地区不同优势降雨的影响

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摘要

A weather research and forecasting model (WRF) coupled with a multilayer urban canopy model (BEP) was employed to assess the impact of urbanization on three rainfall processes of different strengths in Beijing. Based on the satisfactory model simulation performance, sensitivity tests based on a land use map without an urban component were performed to analyze the observed characteristics and the mechanisms underlying the influence of urbanization on rainfall of different strengths. The results showed that urbanization has the most significant influence on heavy rain among the three rainfall cases with different precipitation strengths and that urbanization obviously increased the amount of precipitation in urban areas and upwind and downwind suburban areas. At the edge of the city, moderate rainfall was also increased by urbanization. However, urbanization had almost no effect on light rainfall. A possible mechanism underlying the urbanization-induced change in precipitation is proposed. Urbanization results in changes in land use and increases in anthropogenic heat via changes in the energy balance of the surface, creating urban heat islands (UHIs). Consequently, cyclonic activity is more easily generated upwind and downwind of the urban area. When the moisture is sufficiently high, such as in cases of heavy or moderate rainfall, moisture flux convergence is more likely to develop in urban areas and the upwind and downwind areas. The rainfall system is enhanced in these areas as a result of the increase in the potential energy in the system.
机译:采用了与多层城市冠层模型(BEP)相结合的天气研究和预测模型(WRF),以评估城市化对北京不同优势的三种降雨过程的影响。基于令人满意的模型仿真性能,基于没有城市成分的土地使用地图的敏感性测试进行了分析观察到的特征和城市化影响对不同优势的降雨的影响。结果表明,城市化对大雨的大雨影响最大,在不同的降雨量的沉淀优势中,城市化明显增加了城市地区和逆风和下行郊区的降水量。在城市的边缘,城市化也增加了温和的降雨量。然而,城市化几乎没有对降雨的影响。提出了城市化诱导的降水变化的可能机制。城市化导致土地利用的变化,通过表面的能量平衡的变化,创造城市热岛(UHIS)的变化增加了人为热量。因此,旋风活动更容易产生逆风和城市地区的逆风。当水分足够高,例如在重度或中度降雨量的情况下,水分助长的融合更可能在城市地区和挤压和向下的地区开发。由于系统中的潜在能量的增加,这些区域的降雨系统增强。

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  • 来源
    《Theoretical and applied climatology 》 |2020年第4期| 1097-1110| 共14页
  • 作者单位

    China Meteorol Adm Inst Urban Meteorol Beijing 100089 Peoples R China;

    Chinese Acad Sci Inst Atmospher Phys State Key Lab Numer Modeling Atmospher Sci & Geop Beijing 100029 Peoples R China|Univ Chinese Acad Sci Beijing 100049 Peoples R China;

    China Meteorol Adm Inst Urban Meteorol Beijing 100089 Peoples R China;

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