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首页> 外文期刊>Journal of hydrometeorology >Impacts of Anthropogenic Heat on Summertime Rainfall in Beijing
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Impacts of Anthropogenic Heat on Summertime Rainfall in Beijing

机译:人为热对北京夏季降雨的影响

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摘要

Anthropogenic heat is an important component of the urban energy budgets that can affect land surface and atmospheric boundary layer processes. Representation of anthropogenic heat in numerical climate modeling systems is therefore important when simulating urban meteorology and climate and has the potential to improve weather forecasts, climate process studies, and energy demand analysis. Here, spatiotemporally dynamic anthropogenic heat data estimated by the Building Effects Parameterization and Building Energy Model (BEP-BEM) are incorporated into the Weather Research and Forecasting (WRF) Model system to investigate its impact on simulation of summertime rainfall in Beijing, China. Simulations of four local rainfall events with and without anthropogenic heat indicate that anthropogenic heat leads to increased rainfall over the urban area. For all four events, anthropogenic heat emission increases sensible heat flux, enhances mixing and turbulent energy transport, lifts PBL height, increases dry static energy, and destabilizes the atmosphere in urban areas through thermal perturbation and strong upward motion during the prestorm period, resulting in enhanced convergence during the major rainfall period. Intensified rainfall leads to greater atmospheric dry-down during the storm and a higher poststorm LCL.
机译:人为热是城市能源预算的重要组成部分,可以影响陆地表面和大气边界层过程。因此,在数值气候建模系统中的人为热量的表示是在模拟城市气象和气候时的重要性,并且有可能改善天气预报,气候过程研究和能源需求分析。在这里,由建筑物效应参数化和建筑能量模型(BEP-BEM)估计的时空动态人为动态热数据被纳入天气研究和预测(WRF)模型系统,以研究其对北京夏季降雨模拟的影响。仿真有4种局部降雨事件,没有人为热,表明人为热量导致城市地区的降雨量增加。对于所有四种事件,人为散热增加显着的热通量,增强混合和湍流能量运输,升高PBL高度,增加了干燥的静态能量,并通过热扰动期间的热扰动和强烈向上运动使大气变得稳定,导致在重大降雨期间提高收敛。在暴风雨期间,加强降雨导致大气干燥和更高的自发静态LCL。

著录项

  • 来源
    《Journal of hydrometeorology》 |2017年第3期|共20页
  • 作者单位

    Tsinghua Univ Dept Hydraul Engn State Key Lab Hydrosci &

    Engn Beijing Peoples R China;

    Johns Hopkins Univ Dept Earth &

    Planetary Sci Baltimore MD 21218 USA;

    Tsinghua Univ Dept Hydraul Engn State Key Lab Hydrosci &

    Engn Beijing Peoples R China;

    Tsinghua Univ Dept Hydraul Engn State Key Lab Hydrosci &

    Engn Beijing Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文循环与水文气象;
  • 关键词

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