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Impact of atmospheric boundary layer inhomogeneity in CFD simulations of tall buildings

机译:大气边界层不均匀性对高层建筑的CFD模拟影响

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摘要

Recently, there has been a growing interest in utilizing computational fluid dynamics (CFD) for wind analysis of tall buildings. A key factor that influences the accuracy of CFD simulations in urban environments is the homogeneity of the atmospheric boundary layer (ABL). This paper aims to investigate solution inaccuracies in CFD simulations of tall buildings that are due to ABL inhomogeneity. The investigation involves two steps. In the first step, homogenous and inhomogeneous ABL conditions are generated in an empty computational domain by employing two different modelling approaches. In the second step, the homogenous and inhomogeneous conditions are each applied to an isolated tall building, and simulation results are compared to investigate impact of ABL inhomogeneity on wind load predictions. The study finds that ABL inhomogeneity can be a significant source of error and may compromise reliability of wind load predictions. The largest magnitude of inhomogeneity error occurred for pressure predictions on the windward building surface. Shortening the upstream domain length reduced inhomogeneity errors but increased errors due to wind-blocking effects. The study proposes a practical approach for detecting ABL inhomogeneity that is based on monitoring sensitivity of key output metrics to variations in upstream domain length.
机译:最近,利用高层建筑的风分析的计算流体动力学(CFD)越来越兴趣。影响城市环境中CFD模拟准确性的关键因素是大气边界层(ABL)的均匀性。本文旨在调查由于ABL不均匀性为原因的高层建筑物的CFD模拟中的解决方案不准确。调查涉及两个步骤。在第一步中,通过采用两种不同的建模方法,在空计算域中产生均匀和不均匀的ABL条件。在第二步中,均匀和不均匀的条件各自施加到隔离的高层建筑物中,并将模拟结果进行比较,以研究ABL不均匀性对风力荷载预测的影响。该研究发现,ABL的不均匀性可以是一个重要的误差来源,并且可能会损害风力负荷预测的可靠性。在迎风建筑物表面上的压力预测发生最大的不均匀性误差。缩短上游域长度降低不均匀性误差,但由于风阻效应导致的误差增加。该研究提出了一种方法,用于检测基于监测关键输出度量的灵敏度对上游域长度变化的ABL不均匀性的实用方法。

著录项

  • 期刊名称 Heliyon
  • 作者单位
  • 年(卷),期 2020(6),7
  • 年度 2020
  • 页码 e04274
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:土木工程;结构工程;计算流体动力学;计算机辅助工程;大气建模;大气边界层均匀性;高层建筑;CAARC;CFD仿真;风装;解决方案验证;解决方案验证;

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