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Performance of various RANS eddy-viscosity models for turbulent natural convection in tall vertical cavities

机译:高垂直腔中自然湍流的各种RANS涡流-粘度模型的性能

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摘要

The present study is dedicated to the identification of turbulence models that are accurate and numerically economic for computing the natural air-flow and heat transfer by convection in tall cavities with differentially heated vertical walls. The eddy-viscosity models (EVM) are among the simplest to implement and the most economical to treat this problem. This study evaluated the dynamic, thermal and computational performances of twenty EVM turbulence models with one, two or three-equation closure. All the models were first implemented in several in-house codes using the finite volume method. The predictions of the retained models in terms of profiles of velocity, temperature and vertical velocity fluctuations in the cavity have been compared with those of experimental or numerical studies. The obtained results were used to identify the turbulence models that are accurate and numerically economic in predicting natural convection in vertical cavities with a high aspect ratio. The EVM models with three-equation (v2-f and ξ-f) provide the most accurate mean and fluctuating quantities, followed by the k-e RNG (ReNormalization Group) and k-ω SST (Shear Stress Transport) models. The computing time of these four models is higher than that of the 2L (two-layer) and q-ω models, which provide fairly accurate results especially for the mean heat transfer between the vertical active walls. The other one-equation (Spalart and Allmaras model) and two-equation (k-ε, k-ω and hybrid models) turbulence models tested in this work, have a high computing time and/or predictions that are not sufficiently precise simultaneously for both velocity and temperature fields.
机译:本研究致力于确定湍流模型,该模型对于在带有垂直加热壁的高空洞中的对流计算自然气流和传热时是准确的,并且在数值上是经济的。涡粘性模型(EVM)是最简单,最经济的解决方案。这项研究评估了具有一,二或三方程闭合的20个EVM湍流模型的动态,热学和计算性能。所有模型都首先使用有限体积方法以几种内部代码实现。在腔内的速度,温度和垂直速度波动方面,保留模型的预测已与实验或数值研究相比较。获得的结果用于识别湍流模型,该模型在预测高纵横比的垂直型腔中的自然对流时是准确的,并且在数值上是经济的。具有三个方程式(v2-f和ξ-f)的EVM模型提供了最准确的均值和波动量,其后是k-e RNG(重新归一化组)和k-ωSST(剪切应力传递)模型。这四个模型的计算时间比2L(两层)模型和q-ω模型的计算时间长,这两个模型提供了相当准确的结果,尤其是对于垂直活动壁之间的平均传热。在这项工作中测试的另一个一方程(Spalart和Allmaras模型)和二方程(k-ε,k-ω和混合模型)湍流模型具有很高的计算时间和/或预测,而对于速度和温度场。

著录项

  • 来源
    《Heat and mass transfer》 |2014年第8期|1103-1113|共11页
  • 作者单位

    LMFE (CNRST-URAC 27), Faculty of Sciences Semlalia,Cadi Ayyad University, BP 2390, Marrakech, Morocco;

    LMFE (CNRST-URAC 27), Faculty of Sciences Semlalia,Cadi Ayyad University, BP 2390, Marrakech, Morocco;

    LMFE (CNRST-URAC 27), Faculty of Sciences Semlalia,Cadi Ayyad University, BP 2390, Marrakech, Morocco;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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