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首页> 外文期刊>The Science of the Total Environment >Numerical simulation of the impact of reforestation on winter meteorology and environment in a semi-arid urban valley, Northwestern China
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Numerical simulation of the impact of reforestation on winter meteorology and environment in a semi-arid urban valley, Northwestern China

机译:西北半干旱城市山谷造林对冬季气象和环境影响的数值模拟

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摘要

Since 1999 Chinese government has made great effort to reforest the south and north mountains surrounding urban Lanzhou - a city located in a river valley, Northwestern China. Until 2009 obvious land use change occurred, with 69.2% of the reforested area been changed from grasslands, croplands, barren or sparsely vegetated land to closed shrublands and 20.6% from closed shrublands, grasslands, and croplands to forests. Reforestation changes land-surface properties, with possible impact on the evolution of atmospheric variables. To understand to what extent the local meteorology and environment could be affected by reforestation in winter, and through what processes, two sets of simulations were conducted using the Weather Research and Forecasting model (WRF) and the FLEXible PARTicle (FLEXPART) dispersion model for a control case with high-resolution remotely sensed land cover data for 2009 and a scenario assuming no reforestation since 1999. Results suggested that the changes in albedo, surface exchange coefficient and surface soil heat conductivity related to reforestation led to the changes in surface net radiation and surface energy partitioning, which in turn affected the meteorological fields and enhanced the mountain-valley wind circulation. Replacement of shrublands and grassland with forest in the south mountain through reforestation play a dominant role in the enhancement of mountain-valley wind circulation. Reforestation increased the amount of air exchanged between the valley and the outside during the day, with the largest hourly increase of 10% on calm weather days and a monthly mean hourly increase of 2% for the study period (Dec. 2009). Reforestation affected the spatial distribution of pollutants and slightly improved the urban air quality, especially in the eastern valley. Results from this study provide useful information for future urban air quality management and reforestation plan, and some experience for cities with similar situations in the world.
机译:自1999年以来,中国政府一直在为兰州市区周围的南北山脉重新造林,兰州是位于中国西北部河谷的城市。到2009年为止,土地利用发生了明显变化,重新造林面积的69.2%从草地,农田,贫瘠或稀疏的植被变为封闭的灌木地,而从封闭的灌木地,草地和农田的20.6%变为森林。植树造林改变了土地表面的特性,可能对大气变量的演变产生影响。为了了解冬季的重新造林会在多大程度上影响当地的气象和环境,以及通过什么过程,使用天气研究和预报模型(WRF)和FLEXible Particle(FLEXPART)扩散模型进行了两组模拟。以高分辨率遥感土地覆盖数据为对照的控制案例,以及自1999年以来没有再造林的假设情景。结果表明,与造林有关的反照率,地表交换系数和地表土壤热导率的变化导致地表净辐射量的变化。地表能量分配,反过来影响了气象领域,增强了山谷风的流通。通过植树造林,在南部山区用森林代替灌木丛和草地在增强山谷风循环方面起着主导作用。植树造林增加了白天山谷与外界之间的空气交换量,在平静的天气里,每小时的最大增幅为10%,在研究期间(2009年12月)每月的平均每小时增幅为2%。植树造林影响了污染物的空间分布,并略微改善了城市空气质量,特别是在东部山谷。这项研究的结果为将来的城市空气质量管理和植树造林计划提供了有用的信息,并为世界上类似情况的城市提供了一些经验。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第1期|404-415|共12页
  • 作者单位

    Key Laboratory of Land Surface Process & Climate Change in Cold & Arid Regions, Cold and Arid Regions Environmental & Engineering Research Institute, Chinese Academy of Sciences, Lanzhou, 730000, Gansu, China;

    Clod and Arid Regions Environmental and Engineering Research Institute, Key Laboratory of Land Surface Process and Climate Change in Cold & Arid Regions, Chinese Academy of Sciences, Lanzhou 730000, China,College of Environmental Science & Engineering, Nankai University, Tianjin 300071, China;

    Clod and Arid Regions Environmental and Engineering Research Institute, Key Laboratory of Land Surface Process and Climate Change in Cold & Arid Regions, Chinese Academy of Sciences, Lanzhou 730000, China;

    Clod and Arid Regions Environmental and Engineering Research Institute, Key Laboratory of Land Surface Process and Climate Change in Cold & Arid Regions, Chinese Academy of Sciences, Lanzhou 730000, China,Weather Modification Office, Qinghai Meteorological Bureau, Xining 810001, China;

    Clod and Arid Regions Environmental and Engineering Research Institute, Key Laboratory of Land Surface Process and Climate Change in Cold & Arid Regions, Chinese Academy of Sciences, Lanzhou 730000, China;

    College of Environmental Science & Engineering, Nankai University, Tianjin 300071, China;

    College of Environmental Science & Engineering, Nankai University, Tianjin 300071, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Land use change; Air pollution; WRF; Mountain-valley circulation; Complex terrain; Lanzhou;

    机译:土地用途变化;空气污染;WRF;山谷环流;复杂的地形;兰州;

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