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成都精细下垫面信息对城市气象影响的模拟试验
引用本文:肖丹,陈静,陈章,张波.成都精细下垫面信息对城市气象影响的模拟试验[J].气象,2011,37(3):298-308.
作者姓名:肖丹  陈静  陈章  张波
作者单位:1. 成都信息工程学院,成都,610225
2. 国家气象中心,北京,100081
3. 成都市气象局,成都,610072
基金项目:国家自然科学基金(40675041)和公益性行业(气象)科研专项(GYHY200706001,GYHY200906007)共同资助
摘    要:为了提高成都市精细化天气预报水平,使用成都地区精细下垫面土地利用资料,在WRF中耦合了单层城市冠层模式,对2008年7月6 日晴空背景下的成都城市气象特征进行了模拟,并和使用旧土地利用资料、slab模式的模拟结果进行了对比分析.模拟结果表明城区因为不透水下垫面的增加,使得地表蒸发和地表水汽通量显著减小,潜热通量减小,感...

关 键 词:精细下垫面  城市冠层  城市气象  模拟
收稿时间:2010/2/26 0:00:00
修稿时间:2010/5/14 0:00:00

Effect Simulation of Chengdu Fine Underlying Surface Information on Urban Meteorology
XIAO Dan,CHEN Jing,CHEN Zhang and ZHANG Bo.Effect Simulation of Chengdu Fine Underlying Surface Information on Urban Meteorology[J].Meteorological Monthly,2011,37(3):298-308.
Authors:XIAO Dan  CHEN Jing  CHEN Zhang and ZHANG Bo
Institution:Chengdu University of Information Technology, Chengdu 610225;National Meteorological Center, Beijing 100081;Chengdu Meteorological Bureau, Chengdu 610072;Chengdu Meteorological Bureau, Chengdu 610072
Abstract:In order to improve the level of Chengdu fine weather forecast, using Chengdu fine underlying surface data, the urban meteorological characteristics of Chengdu are simulated by the WRF coupled with single layer urban canopy model for a clear day, on July 6, 2008, and those are compared to simulations with old land use data and slab model. The result shows that because of urban impervious underlying surface area increasing, the surface evaporation and upward moisture flux are significantly reduced, latent heat flux decreases and sensible heat flux increases. Urban buildings can intercept long wave radiation energy, so urban turbulence enhances and boundary layer height becomes higher; With the fine land use data and single layer urban canopy model, both negative bias and root mean square error of 2 m temperature decrease; Urban area expansion and more buildings have led to the result that the urban heat island effect strengthens, urban 10 m wind speed decreases, heat circulation between urban and suburban areas enhances, and local vertical circulation boosts.
Keywords:fine underlying surface  urban canopy  urban meteorology  simulation
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