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Evaluation of RANS turbulence models for simulating wind-induced mean pressures and dispersions around a complex-shaped high-rise building

机译:评估复杂形状的高层建筑周围风致平均压力和弥散的RANS湍流模型的评估

摘要

Re-ingestion of the contaminated exhaust air from the same building is a concern in high-rise residential buildings, and can be serious depending on wind conditions and contaminant source locations. In this paper, we aim to assess the prediction accuracy of three k-e{open} turbulence models, in numerically simulating the wind-induced pressure and indoor-originated air pollutant dispersion around a complex-shaped high-rise building, by comparing with our earlier wind tunnel test results. The building modeled is a typical, 33-story tower-like building consisting of 8-household units on each floor, and 4 semi-open, vertical re-entrant spaces are formed, with opposite household units facing each other in very close proximity. It was found that the predicted surface pressure distributions by the two revised k-e{open} models, namely the renormalized and realizable k-e{open} models agree reasonably with experimental data. However, with regard to the vertical pollutant concentration distribution in the windward re-entrance space, obvious differences were found between the three turbulence models, and the simulation result using the realizable k-e{open} model agreed the best with the experiment. On the other hand, with regard to the vertical pollutant concentration distribution in the re-entrant space oblique to the wind, all the three models gave acceptable predictions at the concentration level above the source location, but severely underestimated the downward dispersion. The effects of modifying the value of the turbulent Schmidt number in the realizable k-e{open} model were also examined for oblique-wind case. It was confirmed that the numerical results, especially the downward dispersion, are quite sensitive to the value of turbulent Schmidt number.
机译:在高层住宅建筑中,重新吸入来自同一建筑物的受污染废气是一个问题,根据风况和污染物源位置的不同,这可能很严重。在本文中,我们的目标是评估3个ke {open}湍流模型的预测准确性,并与我们之前的模型进行比较,以数值模拟复杂形状的高层建筑周围的风压和室内空气污染物扩散风洞测试结果。建模的建筑物是一幢典型的33层塔状建筑,每层包括8个家庭单元,并形成4个半开放式垂直折返空间,相对的家庭单元彼此非常靠近。结果发现,两种修正的k-e {open}模型的预测表面压力分布,即重新归一化和可实现的k-e {open}模型,与实验数据基本吻合。然而,关于迎风折返空间中的垂直污染物浓度分布,在三个湍流模型之间发现了明显的差异,并且使用可实现的k-e {open}模型进行的模拟结果与实验结果最佳。另一方面,关于倾斜的折返空间中垂直污染物浓度的分布,这三个模型都在源位置以上的浓度水平给出了可接受的预测,但严重低估了向下扩散。在斜风情况下,还研究了在可实现的k-e {open}模型中修改湍流Schmidt值的影响。可以肯定的是,数值结果,特别是向下扩散,对湍流施密特数的值非常敏感。

著录项

  • 作者

    Liu X; Niu J; Kwok KCS;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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