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Large Eddy Simulation of Turbulent Heat Transfer in Pipe Flows of Temperature Dependent Power-Law Fluids

机译:温度依赖性电力法流体管道流动中湍流传热的大型涡流模拟

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Heat transfer in turbulent forced convection of power-law fluids, in a heated horizontal pipe at isoflux conditions, is analyzed by large eddy simulations (LES), with an extended Smagorinsky model. A temperature dependent fluid is studied at various Pearson numbers (0 ≤ Pn ≤ 5), for two power law indices (n = 0.75 and 1), at Reynolds and Prandtl numbers Re_s = 4000 and Pr_s = 1. The LES predictions are validated through comparisons with the literature at Pn = 0. They allow a better understanding of the physical mechanisms involved in the non-Newtonian temperature dependent fluid flows: with increasing Pn, the relative viscosity is reduced close to the wall and enhanced towards the pipe center, reducing the turbulent fluctuations and heat transfer in the bulk and, as a consequence, the friction factor and Nusselt number.
机译:通过大型涡流模拟(LES)在IsoFlum条件下的加热水平管中传热在湍流强制对流中的动力 - 法液中的热传递,进行了扩展的Smagorinsky模型。 在各种Pearson数(0≤pn≤5)上研究了温度依赖性流体,用于两个电力法索引(n = 0.75和1),在雷诺和prandtl号码re_s = 4000和pr_s = 1。LES预测通过 在PN = 0处与文献进行比较。它们允许更好地理解非牛顿温度依赖性流体流动的物理机制:随着Pn的增加,相对粘度靠近壁而减少并朝向管道中心增强,减少 肿块中的湍流波动和热传递,以及摩擦因子和营养数。

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