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Modeling the impact of urbanization on the local and regional climate in Yangtze River Delta, China

机译:模拟中国长江三角洲城市化对当地和区域气候的影响

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The Yangtze River Delta Economic Belt is one of the most active and developed areas in China and has experienced quick urbanization with fast economic development. The weather research and forecasting model (WRF), with a single-layer urban canopy parameterization scheme, is used to simulate the influence of urbanization on climate at local and regional scales in this area. The months January and July, over a 5-year period (2003-2007), were selected to represent the winter and summer climate. Two simulation scenarios were designed to investigate the impacts of urbanization: (1) no urban areas and (2) urban land cover determined by MODIS satellite observations in 2005. Simulated near-surface temperature, wind speed and specific humidity agree well with the corresponding measurements. By comparing the simulations of the twornscenarios, differences in near-surface temperature, wind speed and precipitation were quantified. The conversion of rural land (mostly irrigation cropland) to urban land cover results in significant changes to near-surface temperature, humidity, wind speed and precipitation. The mean near-surface temperature in urbanized areas increases on average by 0.45±0.43℃ in winter and 1.9±0.55℃ in summer; the diurnal temperature range in urbanized areas decreases on average by 0.13±0.73℃ in winter and 0.55±0.84℃ in summer. Precipitation increases about 15% over urban or leeward areas in summer and changes slightly in winter. The urbanization impact in summer is stronger and covers a larger area than that in winter due to the regional east-Asian monsoon climate characterized by warm, wet summers and cool, dry winters.
机译:长江三角洲经济带是中国最活跃,最发达的地区之一,经历了快速的城市化和经济的快速发展。使用具有单层城市雨棚参数化方案的天气研究和预报模型(WRF),可以模拟该地区局部和区域范围内城市化对气候的影响。选择5年(2003-2007年)的1月和7月来代表冬季和夏季气候。设计了两种模拟方案来研究城市化的影响:(1)2005年MODIS卫星观测确定没有城市地区和(2)城市土地覆盖。模拟的近地表温度,风速和比湿度与相应的测量值非常吻合。通过比较两种情况的模拟,可以量化近地表温度,风速和降水的差异。农村土地(主要是灌溉耕地)向城市土地覆盖的转化导致近地表温度,湿度,风速和降水发生重大变化。城市地区的平均近地表温度冬季平均升高0.45±0.43℃,夏季平均升高1.9±0.55℃。城市化区的日平均温度范围冬季平均降低0.13±0.73℃,夏季平均降低0.55±0.84℃。夏季,市区或背风地区的降水量增加约15%,冬季则略有变化。由于东亚季风气候以夏季温暖湿润的夏季和凉爽干燥的冬季为特征,因此夏季对城市化的影响要强于冬季。

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  • 来源
    《Theoretical and applied climatology》 |2010年第4期|p.331-342|共12页
  • 作者单位

    School of Atmospheric Sciences, Nanjing University, Nanjing 210093, China State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

    rnState Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China;

    rnDepartment of Environmental Science, Sun Yat-sen University, Guangzhou 510275, China;

    rnJiangsu Climate Center, Nanjing 210008, China;

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