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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >Numerical modeling of air distribution in a test room wit h 2D sidewall jet. I. Foundations for eddy resolving approach application based on periodical formulation
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Numerical modeling of air distribution in a test room wit h 2D sidewall jet. I. Foundations for eddy resolving approach application based on periodical formulation

机译:试验室机智H 2D侧壁射流空气分布的数值模拟。 I.基于期刊配方的EDDY解决方法申请的基础

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The paper presents the methods and results of numerical modeling of turbulent airflow in a test room based on the vortex-resolving wall-modeled large eddy simulation approach. The room ventilation is provided by a plain air jet at Re = 5233. The jet is supplied from a slit placed at a side wall under the ceiling. The room geometry and airflow parameters correspond to the experimental benchmark test by Nielsen et al. (1978), but with the periodicity boundary conditions in the transverse direction. Calculations were carried out with the ANSYS Fluent software using fine grids consisting of up to 6x10^7 cells. The paper presents detailed analysis of parametric computations aimed at the evaluation of numerical simulation adequacy. In particular, the grid dependency study was performed and the Kolmogorov scale was estimated.
机译:本文基于涡旋解析壁图的大型涡流模拟方法,介绍了试验室湍流气流数值建模的方法和结果。房间通风由RE = 5233处通过普通空气喷射提供。射流从放置在天花板下方的侧壁处的狭缝供应。房间几何和气流参数对应于Nielsen等人的实验基准测试。 (1978),但是周期性边界条件横向。使用由高达6x10 ^ 7个细胞组成的细网来使用ANSYS流畅的软件进行计算。本文提出了对参数计算的详细分析,旨在评估数值模拟充分率。特别地,进行了网格依赖性研究,估计了Kolmogorov比例。

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