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Analysis of fluctuating characteristics of wind-induced airflow through a single opening using LES modeling and the tracer gas technique

机译:利用LES模型和示踪气体技术分析单开口风气流的波动特性。

摘要

The turbulent nature of wind significantly complicates the airflow-exchange process at single openings that function as both inlets and outlets simultaneously. For such flow problems, describing the ventilation rate using a constant value is insufficient if the fluctuating intensity is too large. This paper uses a large eddy simulation (LES) model combined with the tracer gas concentration decay method to investigate fluctuating ventilation characteristics through a single opening under various approaching wind directions. The numerical method is validated against a field measurement of single-sided ventilation rates. Results show that wind direction (which characterizes the external airflow pattern) greatly influences the airflow exchange at a single opening. The ventilation rate is relatively steady for a windward opening and shows more unsteadiness for a lateral and a leeward opening. The airflow-exchange process is mainly driven by the mean flow at the windward opening and is dominated by the turbulent flow at the lateral opening. The findings from this study imply that the turbulence-induced component of single-sided ventilation rates should always be considered, especially for non-windward openings.
机译:风的湍流特性极大地增加了在同时充当入口和出口的单个开口处的气流交换过程。对于这种流动问题,如果波动强度太大,则使用常数描述通风速率是不够的。本文使用大型涡模拟(LES)模型,结合示踪气体浓度衰减方法,研究了在各种接近风向的情况下,通过单个开口的波动通风特性。该数值方法针对单面通风率的现场测量进行了验证。结果表明,风向(表征外部气流模式)极大地影响了单个开口处的气流交换。对于迎风开口,通风速率相对稳定,而对于横向开口和背风开口,通风速率显示出更大的不稳定度。气流交换过程主要由迎风口处的平均流量驱动,而由横向口处的湍流控制。这项研究的结果表明,应始终考虑湍流引起的单面通气量,特别是对于非顺风口的情况。

著录项

  • 作者

    Ai ZT; Mak CM;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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