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Modelling on mesoscale and microscale meteorology (MMM) in complex terrain and building geometry.

机译:在复杂地形和建筑物几何中的中尺度和微尺度气象学(MMM)上建模。

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摘要

In this thesis, multi-scale modelling is used to study the mesoscale and microscale meteorology (MMM) in complex terrain and building geometry. The first part of this thesis couples a mesoscale model (MM5) and a microscale model (CALMET) to provide more detailed and realistic wind field simulations over Guangdong (GD), Pearl River Delta (PRD) and Hong Kong (HK), well known as regions with complex terrain.;After model validation, the MM5/CALMET system is utilized to generate wind maps over GD, PRD and HK with resolutions of 3 km, 250 m and 100 m respectively. The wind maps are utilized to analyze year-to-year variations (2004-2006) of wind availability over southern China and investigate the wind energy potential over GD, PRD and HK.;The second part of the thesis couples the MM5/CALMET system with a multi-layer, non-steady-state puff dispersion model, "CALPUFF". This is used to identify the SO2 contribution of PRD and HK power plants, road vehicles and marine vessels to the air quality of HK in summer and winter. In this study, the observation data at 11 general Environmental Protection Department (EPD) stations and simulation results are analyzed. In-zone and out-zone stations are defined to examine the SO2 contribution of emission sources to different parts of HK.;Beside large-scale pollution problems, this thesis also investigates the finer scale (microscale) pollutions, as the "wall effect" in the urban area is a concern in HK. In this study, computational fluid dynamics (CFD) is utilized to achieve a deeper understanding of the wind speed reduction at the pedestrian level (2 m above ground) due to differing height of frontal high-rise buildings. The xvii retention time of pollutants emitted from road vehicles is also investigated to quantify the influence of pollutant dispersion in a street canyon environment.
机译:本文采用多尺度建模研究复杂地形和建筑几何学的中尺度和微尺度气象学。本文的第一部分结合了中尺度模型(MM5)和微观模型(CALMET),以提供广东(GD),珠江三角洲(PRD)和香港(HK)上更详细,更逼真的风场模拟模型验证后,利用MM5 / CALMET系统在GD,PRD和HK上生成风图,分辨率分别为3 km,250 m和100 m。利用该风向图分析了中国南部地区的年可用风的逐年变化(2004-2006),并研究了广东,珠三角和香港的风能潜力。论文的第二部分结合了MM5 / CALMET系统带有多层非稳态粉扑扩散模型“ CALPUFF”。这用于确定珠三角和香港发电厂,公路车辆和轮船在夏季和冬季对香港空气质量的SO2贡献。在这项研究中,分析了11个环境保护总局(EPD)站点的观测数据和模拟结果。定义了区域内和区域外的站点,以检查排放源对香港不同地区的SO2贡献。;除了大规模的污染问题,本文还研究了更细微的(微观)污染,称为“墙效应”。在香港,城市地区是一个需要关注的问题。在这项研究中,由于正面高层建筑的高度不同,利用计算流体动力学(CFD)可以更深入地了解行人水平(离地面2 m)处的风速降低。还研究了公路车辆排放污染物的xvii保留时间,以量化污染物在街道峡谷环境中的扩散影响。

著录项

  • 作者

    Yim, Steve Hung-Lam.;

  • 作者单位

    Hong Kong University of Science and Technology (Hong Kong).;

  • 授予单位 Hong Kong University of Science and Technology (Hong Kong).;
  • 学科 Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 213 p.
  • 总页数 213
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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