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Impact of Urban Surface Roughness Length Parameterization Scheme on Urban Atmospheric Environment Simulation

机译:城市表面粗糙度参数化方案对城市大气环境模拟的影响

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In this paper, the impact of urban surface roughness lengthz0parameterization scheme on the atmospheric environment simulation over Beijing has been investigated through two sets of numerical experiments using the Weather Research and Forecasting model coupled with the Urban Canopy Model. For the control experiment (CTL), the urban surfacez0parameterization scheme used in UCM is the model default one. For another experiment (EXP), a newly developed urban surfacez0parameterization scheme is adopted, which takes into account the comprehensive effects of urban morphology. The comparison of the two sets of simulation results shows that all the roughness parameters computed from the EXP run are larger than those in the CTL run. The increased roughness parameters in the EXP run result in strengthened drag and blocking effects exerted by buildings, which lead to enhanced friction velocity, weakened wind speed in daytime, and boosted turbulent kinetic energy after sunset. Thermal variables (sensible heat flux and temperature) are much less sensitive toz0variations. In contrast with the CTL run, the EXP run reasonably simulates the observed nocturnal low-level jet. Besides, the EXP run-simulated land surface-atmosphere momentum and heat exchanges are also in better agreement with the observation.
机译:本文通过两套数值实验,通过使用天气研究和预测模型与城市树冠模型的两套数值实验研究了城市表面粗糙度长度Z0分参数方案对北京大气环境模拟的影响。对于控制实验(CTL),UCM中使用的城市SurfaceZ0参数化方案是模型默认值。对于另一个实验(exp),采用了新开发的城市SurfaceZ0分参数,这考虑了城市形态的综合影响。两组仿真结果的比较表明,从EXP运行计算的所有粗糙度参数都大于CTL运行中的所有粗糙度参数。 EXP运行中的粗糙度参数增加导致建筑物施加的阻力和阻塞效果,这导致摩擦速度增强,白天风速减弱,日落后提高了湍流动能。热变量(明智的热通量和温度)敏感敏感度要不那么敏感。与CTL运行相比,EXP运行合理地模拟了观察到的夜间低级喷射。此外,EXP运行模拟的土地表面 - 大气动量和热交换器也与观察更好。

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