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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >NUMERICAL INVESTIGATION OF TURBULENT FORCED CONVECTION IN DUCTS WITH RECTANGULAR AND TRAPEZOIDAL CROSS-SECTION AREA BY USING DIFFERENT TURBULENCE MODELS
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NUMERICAL INVESTIGATION OF TURBULENT FORCED CONVECTION IN DUCTS WITH RECTANGULAR AND TRAPEZOIDAL CROSS-SECTION AREA BY USING DIFFERENT TURBULENCE MODELS

机译:使用不同湍流模型的矩形和梯形横截面管道中湍流强迫对流的数值研究

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The present work concerns development and application of turbulence models for forced convective heat transfer in ducts. Fully developed flow and temperature fields in straight ducts are considered. The numerical approach is based on the finite volume technique, and a nonstaggered arrangement is employed. The SIMPLEC algorithm is used for handling the pressure-velocity coupling. To achieve fully developed conditions, cyclic boundary conditions are imposed in the main flow direction. The standard k-epsilon model with wall function is used as a reference. The nonlinear k-epsilon model of Speziale is applied to calculate the turbulent shear stresses. The turbulent heat fluxes are calculated by three different methods, namely, the simple eddy diffusivity concept, the generalized gradient diffusion hypothesis method and the wealth = earnings x time method. The overall comparison between the methods is presented in terms of the friction factor and average Nusselt number. In particular, the secondary flow field is investigated. The more advanced models show improvement in most cases. [References: 30]
机译:目前的工作涉及湍流模型在管道中强制对流换热的发展和应用。考虑在直管中充分发展的流场和温度场。数值方法基于有限体积技术,并且采用无交错排列。 SIMPLEC算法用于处理压力-速度耦合。为了获得充分发展的条件,在主流动方向上施加了循环边界条件。具有壁功能的标准k-ε模型用作参考。应用Speziale的非线性k-ε模型来计算湍流剪应力。湍流通量是通过三种不同的方法来计算的,即简单的涡流扩散率概念,广义梯度扩散假设方法和财富=收益x时间方法。两种方法之间的总体比较以摩擦系数和平均努塞尔数表示。特别地,研究了次级流场。在大多数情况下,更高级的模型显示有所改进。 [参考:30]

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