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Entropy generation minimization (EGM) for convection nanomaterial flow with nonlinear radiative heat flux

机译:具有非线性辐射热通量的对流纳米材料流动的熵产生最小化(EGM)

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Here entropy generation and magnetohydrodynamics (MHD) impacts in unsteady viscous nanoliquid flow are elaborated. Flow induced is by impermeable rotating disk. Application of thermodynamic second law is employed for the analysis of entropy generation. Nanofluid characteristics have been addressed through thermophoresis and Brownian movement. Nonlinear versions of mixed convection and thermal radiation are introduced simultaneously. The process of non-dimensionalization is performed via implementation of suitable variables. Nonlinear computations have been carried out. The rate of total entropy generation is evaluated for distinct arising variables. Skin-friction and Nusselt and Sherwood numbers in addition to velocity, temperature and nanoparticles concentration are emphasized. We found increasing trend in temperature and velocity for unsteadiness factor whereas opposite scenario is noticed regarding nanoparticles concentration. Entropy generation rate enhances with increasing of Brinkman number, Eckert number and magnetic parameter while the opposite behavior is recorded for Reynolds number. While Bejan number has direct relation to Eckert number, Reynolds number, and magnetic parameter, While for Brinkman number the situation is opposite. Moreover the surface acts as effective source of irreversibility when entropy generation rate is closed to the surface is higher. (C) 2018 Elsevier B.V. All rights reserved.
机译:这里熵产生和磁流体(MHD)在非定常粘稠nanoliquid流动影响进行详细阐述。由不透水旋转盘流动引起的IS。采用熵产生的分析热力学第二定律的应用。纳米流体特性已经通过热泳和布朗运动解决。混合对流和热辐射的非线性版本同时引入。非量纲的过程是通过执行合适的变量的执行。非线性计算已经进行了。总熵产生的速率为不同而产生的变量进行评价。表面摩擦和努塞尔和舍伍德号码除了速度,温度和纳米颗粒浓度被强调。而相反的情况是关于纳米颗粒浓度注意到,我们发现增加温度和速度的趋势不稳定因素。熵产率提高与而相反的行为被记录为雷诺数布林克曼数,埃克特数和磁性参数增加。虽然比赞数有直接关系埃克特数,雷诺数和磁参数,而对于布林克曼数的情况是相反的。此外,该表面用作不可逆的有效来源,当熵的生成速率被闭合到表面更高。 (c)2018年elestvier b.v.保留所有权利。

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