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Numerical analysis of heat transfer in pulsating turbulent flow in a pipe

机译:管内脉动湍流传热的数值分析

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Convection heat transfer in pulsating turbulent flow with large velocity oscillating amplitudes in a pipe at constant wall temperature is numerically studied. A low-Reynolds-number (LRN) k-ε turbulent model is used in the turbulence modeling. The model analysis indicates that Womersley number is a very important parameter in the study of pulsating flow and heat transfer. Flow and heat transfer in a wide range of process parameters are investigated to reveal the velocity and temperature characteristics of the flow. The numerical calculation results show that in a pulsating turbulent flow there is an optimum Womersley number at which heat transfer is maximally enhanced. Both larger amplitude of velocity oscillation and flow reversal in the pulsating turbulent flow also greatly promote the heat transfer enhancement.
机译:数值研究了在恒定壁温下脉动湍流中大振幅振荡的对流换热。在湍流建模中使用了低雷诺数(LRN)k-ε湍流模型。模型分析表明,沃默斯利数是脉动流动和传热研究中非常重要的参数。研究了各种工艺参数中的流动和传热,以揭示流动的速度和温度特性。数值计算结果表明,在脉动湍流中,存在一个最佳的沃默斯利数,在该数下最大程度地提高了热传递。脉动湍流中较大的速度振荡幅度和逆流都极大地促进了传热。

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