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Numerical Model Inter-comparison for Wind Flow and Turbulence Around Single-Block Buildings

机译:单栋建筑周围风流和湍流的数值模型比对

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摘要

Wind flow and turbulence within the urban canopy layer can influence the heating and ventilation of buildings, affecting the health and comfort of pedestrians, commuters and building occupants. In addition, the predictive capability of pollutant dispersion models is heavily dependent on wind flow models. For that reason, well-validated microscale models are needed for the simulation of wind fields within built-up urban microenvironments. To address this need, an inter-comparison study of several such models was carried out within the European research network ATREUS. This work was conducted as part of an evaluation study for microscale numerical models, so they could be further implemented to provide reliable wind fields for building energy simulation and pollutant dispersion codes. Four computational fluid dynamics (CFD) models (CHENSI, MIMO, VADIS and FLUENT) were applied to reduced-scale single-block buildings, for which quality-assured and fully documented experimental data were obtained. Simulated wind and turbulence fields around two surface-mounted cubes of different dimensions and wall roughness were compared against experimental data produced in the wind tunnels of the Meteorological Institute of Hamburg University under different inflow and boundary conditions. The models reproduced reasonably well the general flow patterns around the single-block buildings, although over-predictions of the turbulent kinetic energy were observed near stagnation points in the upwind impingement region. Certain discrepancies between the CFD models were also identified and interpreted. Finally, some general recommendations for CFD model evaluation and use in environmental applications are presented.
机译:城市冠层内的风流和湍流会影响建筑物的采暖和通风,从而影响行人,通勤者和建筑物居民的健康和舒适感。此外,污染物扩散模型的预测能力在很大程度上取决于风流模型。因此,需要使用经过验证的微尺度模型来模拟已建成的城市微环境中的风场。为了满足这一需求,在欧洲研究网络ATREUS内对几种此类模型进行了比较研究。这项工作是对微尺度数值模型进行评估研究的一部分,因此可以进一步实施它们,以为建筑能耗模拟和污染物扩散代码提供可靠的风场。将四种计算流体动力学(CFD)模型(CHENSI,MIMO,VADIS和FLUENT)应用于缩小规模的单幢式建筑,并获得了质量有保证并有充分记录的实验数据。将两个不同尺寸和壁面粗糙度的表面贴装立方体周围的模拟风和湍流场与汉堡大学气象学院在不同入流和边界条件下在风洞中产生的实验数据进行了比较。尽管在逆风撞击区域的停滞点附近观察到了湍流动能的过高预测,但这些模型可以很好地再现单体建筑物周围的总体流动模式。 CFD模型之间的某些差异也得到了识别和解释。最后,提出了一些有关CFD模型评估和在环境应用中使用的一般建议。

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  • 来源
    《Environmental Modeling & Assessment》 |2011年第2期|p.169-181|共13页
  • 作者单位

    CESAM, Department of Environment and Planning,University of Aveiro,3810-193 Aveiro, Portugal,Centre for Radiation, Chemical and Environmental Hazards,Health Protection Agency,Chilton, Didcot,OxonOXll ORQ, UK;

    Laboratoire de Mecanique des Fluides, Ecole Centrale de Nantes,BP 92101, 44321 Nantes Cedex 3, France;

    Meteorological Institute, University of Hamburg,Bundesstrasse 55,20146 Hamburg, Germany;

    Department of Engineering, University of Cambridge,Cambridge CB2 1PZ, UK;

    Laboratory of Heat Transfer and Environmental Engineering,Aristotle University of Thessaloniki,54124 Thessaloniki, Greece;

    CESAM, Department of Environment and Planning,University of Aveiro,3810-193 Aveiro, Portugal;

    Laboratoire de Mecanique des Fluides, Ecole Centrale de Nantes,BP 92101, 44321 Nantes Cedex 3, France;

    Senseable City Laboratory, Massachusetts Institute of Technology,Cambridge, MA, USA;

    CESAM, Department of Environment and Planning,University of Aveiro,3810-193 Aveiro, Portugal;

    Meteorological Institute, University of Hamburg,Bundesstrasse 55,20146 Hamburg, Germany;

    Laboratory of Heat Transfer and Environmental Engineering,Aristotle University of Thessaloniki,54124 Thessaloniki, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CFD; wind flow; turbulent kinetic energy; building microclimate; pollutant dispersion; model evaluation;

    机译:差价合约风流湍动能建立小气候;污染物扩散;模型评估;

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