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Comparison of single-sided ventilation characteristics between single-storey and multi-storey buildings due to wind effect

机译:单层和多层建筑物受风影响的单侧通风特性比较

摘要

Previous studies on single-sided natural ventilation are mostly limited to very simple physical models, such as a single-room or single-storey building. Our recent on-site measurements have shown that previous empirical models based on such simple physical models are inapplicable to multi-storey buildings. In order to explore why, this study systematically compares the ventilation characteristics of single-storey and multistorey buildings with single-sided natural ventilation. In addition to single-storey and multi-storey buildings with real rooms and openings, a solid block with the same dimensions as the single-storey building is created for comparison. Steady CFD simulation using the renormalization group (RNG) κ - ε turbulence model is employed to establish the mean flow fields, and the integration method is used to predict the ventilation rates. It is found that both the envelope flow pattern and the ventilation rate of a room in a multi-storey building are highly dependent on its three-dimensional location in the building. This phenomenon cannot be observed and explained using a single-storey building. The implications of the difference in ventilation characteristics between a single-storey and a multi-storey building are discussed and suggestions are made for future studies in single-sided natural ventilation.
机译:以往关于单侧自然通风的研究大多局限于非常简单的物理模型,例如单室或单层建筑。我们最近的现场测量表明,基于这种简单物理模型的先前经验模型不适用于多层建筑物。为了探究原因,本研究系统地比较了单层自然通风的单层和多层建筑物的通风特性。除了具有实际房间和开口的单层和多层建筑物外,还创建了一个尺寸与单层建筑物相同的实心块以进行比较。使用重归一化组(RNG)κ-ε湍流模型进行稳态CFD仿真,以建立平均流场,并使用积分方法预测通风率。发现多层建筑物中的包络流模式和房间的通风率都高度取决于其在建筑物中的三维位置。使用单层建筑物无法观察和解释这种现象。讨论了单层和多层建筑之间通风特性差异的含义,并提出了对单侧自然通风的研究建议。

著录项

  • 作者

    Ai ZT; Mak CM;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 20:56:15

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