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首页> 外文期刊>Case Studies in Thermal Engineering >Entropy generation in MHD radiative viscous nanofluid flow over a porous wedge using the bivariate spectral quasi-linearization method
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Entropy generation in MHD radiative viscous nanofluid flow over a porous wedge using the bivariate spectral quasi-linearization method

机译:使用双变量谱拟线性化方法在多孔楔上的MHD辐射粘性纳米流体中产生熵

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摘要

We study the viscous nanofluid flow over a non-isothermal wedge with thermal radiation. The entropy due to irreversible processes in the system may degrade the performance of the thermodynamic system. Studying entropy generation in the flow over a porous wedge gives insights into how the system is affected by irreversible processes, and indicate which thermo–physical parameters contribute most to entropy generation in the system. The bivariate spectral quasi-linearization method is used to find the convergent solutions of the model equations. The impact of significant parameters such as the Hartmann number, thermophoresis and Brownian motion parameter on the fluid properties is evaluated and discussed. The Nusselt number, skin friction coefficients and Sherwood number are determined. An analysis of the rate of entropy generation in the flow for various parameters is presented, and among other results, we found that the Reynolds number and thermal radiation contribute significantly to entropy generation.
机译:我们研究了具有热辐射的非等温楔形上的粘性纳米流体流动。由于系统中不可逆过程而产生的熵可能会降低热力学系统的性能。研究多孔楔上的流动中的熵产生,可以洞悉系统如何受到不可逆过程的影响,并指出哪些热物理参数对系统中的熵产生贡献最大。使用二元光谱拟线性化方法来找到模型方程的收敛解。评估和讨论了诸如哈特曼数,热泳和布朗运动参数等重要参数对流体性质的影响。确定了努塞尔数,皮肤摩擦系数和舍伍德数。提出了对各种参数的流动中熵产生速率的分析,除其他结果外,我们发现雷诺数和热辐射显着地影响了熵的产生。

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