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首页> 外文期刊>Frontiers in Heat and Mass Transfer >AN INTEGRAL ENERGY EQUATION MODEL FOR HEAT CONVECTION TO TURBULENT BOUNDARY LAYER ON A FLAT PLATE
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AN INTEGRAL ENERGY EQUATION MODEL FOR HEAT CONVECTION TO TURBULENT BOUNDARY LAYER ON A FLAT PLATE

机译:平板上湍流边界层对流换热的积分能量方程模型

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摘要

An integral energy equation model is used to calculate the heat transfer coefficient/Nusselt number, thermal boundary layer thickness and temperature distribution in the turbulent boundary layer for forced convection over a smooth flat plate. The proposed model is based on two polynomial temperature profiles in a thermal laminar sublayer as well as in a fully developed boundary layer and two integral energy equations. The performance of this new model is compared with the most commonly used semi-empirical correlations and the complex established models such as k-ε, k-ω, RSM, and a good agreement is achieved.
机译:积分能量方程模型用于计算在光滑平板上强制对流的传热系数/努塞尔数,热边界层厚度和湍流边界层中的温度分布。所提出的模型基于热层流子层中以及完全扩展的边界层中的两个多项式温度分布以及两个积分能量方程式。将该新模型的性能与最常用的半经验相关性进行比较,并建立了复杂的模型(例如k-ε,k-ω,RSM),并取得了良好的一致性。

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