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Entropy generation in radiative flow of Ree-Eyring fluid due to due rotating disks

机译:由于旋转盘的作用,在Ree-Eyring流体的辐射流中产生了熵

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Purpose This study aims to examine the flow characteristics of Ree-Eyring fluid between two rotating disks. The characteristics of heat transfer are discussed in presence of viscous dissipation, heat source/sink and nonlinear radiative heat flux.Design/methodology/approach Nonlinear flow expressions lead to ordinary ones through adequate similarity transformations. The ordinary differential system has been tackled through optimal homotopic method. The impact of different flow variables on the velocity field, entropy generation rate and temperature fields is graphically discussed. The surface drag force and heat transfer rate are numerically examined via various pertinent parameters.Findings By minimization of values of stretching parameter and Brinkman number, the entropy generation rate can be controlled. The entropy generation rate enhances for higher values of magnetic parameter, while the Bejan number is decreased via magnetic parameter.Originality/value No such work is yet published in the literature.
机译:目的本研究旨在检查两个旋转盘之间的Ree-Eyring流体的流动特性。在存在粘性耗散,热源/热沉和非线性辐射热通量的情况下,讨论了传热的特性。设计/方法/方法非线性流表达式通过充分的相似性转换而变成普通表达式。普通的差分系统已通过最佳同位方法解决。以图形方式讨论了不同流量变量对速度场,熵产生率和温度场的影响。通过各种相关参数对表面阻力和传热速率进行数值检查。发现通过最小化拉伸参数和布林克曼数的值,可以控制熵的产生速度。对于较高的磁参数值,熵产生速率增加,而随着磁参数的减小,Bejan数减小。原始值/值在文献中尚无此类工作。

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