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Entropy generation in dissipative flow of Williamson fluid between two rotating disks

机译:两个旋转盘之间威廉姆森流体的耗散流中的熵产生

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This communication addresses flow characteristics of Williamson fluid between two rotating disks. Electrically conducting fluid is considered. Total entropy generation rate is calculated through implementation of second law of thermodynamics. The lower and upper disks have different stretching rates and angular velocities for rotation. Characteristics of heat transport are expressed through dissipation, heat generation/absorption and thermal radiation. Von Karman transformations are utilized to convert the dimensional flow expressions into dimensionless form. Convergent series solutions are constructed. Influence of different pertinent variables on velocity, temperature, entropy number, skin friction coefficients and Nusselt numbers are studied. It is observed that the axial and tangential velocities increase for higher Weissenberg number while radial velocity decays. Further entropy number remarkably increases for magnetic, radiation and Brinkman number. Bejan number is less for higher magnetic parameter, stretching parameter, Brinkman number and Weissenberg number. (C) 2018 Elsevier Ltd. All rights reserved.
机译:该通信解决了两个旋转盘之间的Williamson流体的流动特性。考虑导电流体。通过执行热力学第二定律计算总熵产生率。下部和上部圆盘具有不同的拉伸速率和旋转角速度。热传递的特性通过耗散,热量产生/吸收和热辐射来表示。利用冯·卡曼(Von Karman)转换将维流表达式转换为无量纲形式。构造收敛级数解。研究了不同相关变量对速度,温度,熵值,皮肤摩擦系数和努塞尔值的影响。可以看出,较高的魏森伯格数使轴向和切向速度增加,而径向速度则减小。对于磁,辐射和布林克曼数,进一步的熵数显着增加。对于较高的磁参数,拉伸参数,Brinkman数和Weissenberg数,Bejan数较小。 (C)2018 Elsevier Ltd.保留所有权利。

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