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Numerical simulation of liquid metal turbulent heat transfer from an inline tube bundle in cross-flow

机译:跨流动管束液态金属湍流热传递的数值模拟

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摘要

Results of numerical simulation of turbulent flow field and heat transfer of liquid metal in cross-flow over inline tube bundles consisting of smooth round tubes are presented. Computations have been performed with the CFD-code ANSYS Fluent on the base of two-dimensional unsteady RANS formulation using the SST turbulence model by Menter and assuming constant physical properties of a fluid with the Prandtl number equal to 0.023. The Reynolds number was ranged from 26200 to 52400. Instantaneous and time-averaged velocity and temperature fields obtained for bundles of different intertube spacing at variation of the bundle width (number of tube rows in the spanwise direction) were analyzed. Integral characteristics of heat transfer were compared with experimental data.
机译:提出了由光滑圆管组成的湍流流场数值模拟的湍流场和液态金属传热的结果。使用SST湍流模型通过压蛋和假设具有等于0.023的PRANDTL数等于0.023的流体的恒定物理性质,使用SST湍流模型流放的CFD代码ANSYS的计算。雷诺数的范围为26200至52400.分析了在束宽度变化的不同间隔间距的瞬时和时间平均速度和温度场,以束宽度(枝条方向上的管排的数量)。与实验数据进行比较热传递的整体特征。

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