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A Mechanical Drag Coefficient Formulation and Urban Canopy Parameter Assimilation Technique for Complex Urban Environments

机译:复杂城市环境下的机械阻力系数公式化和城市冠层参数同化技术

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摘要

A mechanical drag coefficient formulation was implemented into the Building Effect Parameterization + Building Energy Model system coupled with the mesoscale Weather Research Forecasting model to improve the representation of the wind speed in complex urban environments. Previously, this formulation had been assessed only against spatially-averaged results from computational fluid dynamical simulations in idealized urban configurations. The main objective is to evaluate its performance over a real city. The introduction of a drag coefficient that varies with the building plan-area fraction increases the accuracy of the mesoscale model in predicting surface wind speed in complex urban environments (i.e. New York City) particularly in areas with tall buildings. Additionally, a methodology to implement local building information and a new land-cover land-use distribution is proposed that improves the representation of the urban morphology.
机译:在建筑效果参数化+建筑能耗模型系统中结合中尺度天气研究预测模型,采用了机械阻力系数公式,以改善复杂城市环境中风速的表示。以前,仅根据理想化城市配置中计算流体动力学模拟的空间平均结果评估了此公式。主要目标是评估其在真实城市中的表现。引入随建筑平面面积分数变化的阻力系数可提高中尺度模型在复杂城市环境(即纽约市)中预测地表风速的准确性,特别是在高层建筑区域中。此外,提出了一种实施本地建筑信息和新的土地覆盖土地利用分布的方法,以改善城市形态的表征。

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