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首页> 外文期刊>Nuclear Technology >PREDICTIONS OF THE HEAT TRANSFER COEFFICIENT BY CORRELATIONS AND TURBULENCE MODELS
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PREDICTIONS OF THE HEAT TRANSFER COEFFICIENT BY CORRELATIONS AND TURBULENCE MODELS

机译:通过相关性和湍流模型预测换热系数

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摘要

Heat transfer coefficients have been computed for flow in a pipe and flow between two plates with correlations and turbulence models based on Reynolds Averaging of the Navier-Stokes (RANS) equations. Predictions of the correlations and those of RANS turbulence models have been compared with experimental data of flow in a pipe. The correlations considered are those of Dittus-Boelter, Seider-Tate, Petukhov, and Sleicher-Rouse, while the turbulence models include the standard high Reynolds number, the Reynolds stress model, the low Reynolds number, and the v2f model. There are significant differences in the predictions of the correlations as well as in those of the turbulence models. Although computational fluid dynamics simulations have wider applicability and provide more information than simulations using correlations, the heat transfer coefficient predicted by the turbulence models is not always more accurate than that predicted by correlations. The discrepancy in the heat transfer coefficient predicted by the turbulence models is due mainly to discrepancies in the prediction of turbulence near the wall and to the uncertainty in the value of the turbulent Prandtl number.
机译:基于Navier-Stokes(RANS)方程的雷诺平均,已经计算了管道中的流动以及两块板之间的流动与相关性和湍流模型的传热系数。相关性的预测和RANS湍流模型的预测已与管道中流动的实验数据进行了比较。考虑的相关性是Dittus-Boelter,Seider-Tate,Petukhov和Sleicher-Rouse的相关性,而湍流模型包括标准的高雷诺数,雷诺应力模型,低雷诺数和v2f模型。在相关性的预测以及湍流模型的预测中存在显着差异。尽管计算流体动力学模拟比使用相关性的模拟具有更广泛的适用性并提供更多的信息,但湍流模型预测的传热系数并不总是比相关性预测的更为精确。由湍流模型预测的传热系数的差异主要是由于壁附近湍流的预测差异和湍流普朗特数的不确定性所致。

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