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首页> 外文期刊>International Journal of Heat and Mass Transfer >FDLBM simulation of entropy generation in double diffusive natural convection of power-law fluids in an enclosure with Soret and Dufour effects
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FDLBM simulation of entropy generation in double diffusive natural convection of power-law fluids in an enclosure with Soret and Dufour effects

机译:具有Soret和Dufour效应的封闭环境中幂律流体的双扩散自然对流中熵产生的FDLBM模拟

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摘要

In this paper, double-diffusive natural convection with Soret and Dufour effects in a square cavity filled with non-Newtonian power-law fluid has been simulated by Finite Difference Lattice Boltzmann Method (FDLBM) while entropy generations through fluid friction, heat transfer, and mass transfer are analyzed. This study has been conducted for certain pertinent parameters of Rayleigh number (Ra = 10~4 and 10~5), power-law index (n = 0.6-1.4), Lewis number (Le = 2.5 and 5), Dufour parameter (D_f= 0-1), Soret parameter (Sr = 0-1) and the buoyancy ratio (N = -1,0.1,1). Results indicate that the augmentation of the power-law index causes heat and mass transfer to drop. Entropy generation due to fluid friction, heat and mass transfer rises with increase in Rayleigh number. Augmentation of Lewis number enhances entropy generation due to mass transfer. At N = 0.1 and 1, growth of power-law index causes different types of entropy generation to drop. The rise of buoyancy ratio from N = 1 to 1 augments the total irreversibility. The Dufour parameter provokes heat and mass transfer to rise while results in the enhancement of the total irreversibility. The Soret parameter augments mass transfer, but it does not affect heat transfer and total entropy generation considerably.
机译:本文通过有限差分格子Boltzmann方法(FDLBM)模拟了在充满非牛顿幂律流体的方腔中具有Soret和Dufour效应的双扩散自然对流,同时通过流体摩擦,传热和热交换产生了熵。传质分析。本研究针对瑞利数(Ra = 10〜4和10〜5),幂律指数(n = 0.6-1.4),路易斯数(Le = 2.5和5),杜福尔参数(D_f)的某些相关参数进行= 0-1),Soret参数(Sr = 0-1)和浮力比(N = -1,0.1,1)。结果表明,幂律指数的增加会导致传热和传质下降。由于流体摩擦,热和质量传递而产生的熵随瑞利数的增加而增加。由于传质,路易斯数的增加增强了熵的产生。在N = 0.1和1时,幂律指数的增长会导致不同类型的熵生成下降。浮力比从N = 1增加到1会增加总不可逆性。 Dufour参数引起热量和质量传递上升,同时导致总不可逆性增强。 Soret参数增加了传质,但不会显着影响传热和总熵的产生。

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