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Application of computational fluid dynamics in building performance simulation for the outdoor environment: an overview

机译:计算流体动力学在室外环境建筑性能模拟中的应用:概述

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This article provides an overview of the application of computational fluid dynamics (CFD) in building performance simulation for the outdoor environment, focused on four topics: (1) pedestrian wind environment around buildings, (2) wind-driven rain on building facades, (3) convective heat transfer coefficients at exterior building surfaces and (4) air pollutant dispersion around buildings. For each topic, its background, the need for CFD, an overview of some past CFD studies, a discussion about accuracy and some perspectives for practical application are provided. This article indicates that for all four topics, CFD offers considerable advantages compared with wind tunnel modelling or (semi-)empirical formulae because it can provide detailed whole-flow field data under fully controlled conditions and without similarity constraints. The main limitations are the deficiencies of steady Reynolds-averaged Navier-Stokes modelling, the increased complexity and computational expense of large eddy simulation and the requirement of systematic and time-consuming CFD solution verification and validation studies.
机译:本文概述了计算流体力学(CFD)在室外环境的建筑性能模拟中的应用,重点关注四个主题:(1)建筑物周围的行人风环境;(2)建筑立面上的风雨;( 3)建筑外部表面的对流传热系数,以及(4)建筑周围空气污染物的扩散。对于每个主题,提供其背景,对CFD的需求,对一些过去的CFD研究的概述,对准确性的讨论以及一些实际应用的观点。本文指出,对于所有四个主题,CFD与风洞建模或(半)经验公式相比都具有相当大的优势,因为它可以在完全受控的条件下且没有相似性约束的情况下提供详细的全流场数据。主要局限性是稳定的雷诺平均Navier-Stokes建模的缺陷,大型涡流仿真的复杂性和计算费用的增加以及对系统和耗时的CFD解决方案验证和确认研究的需求。

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