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Formulating the behavior of thermal radiation and magnetic dipole effects on Darcy-Forchheimer grasped ferrofluid flow

机译:制定热辐射和磁性偶极效应对达西 - 学生掌握的铁磁流体流动的行为

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摘要

In this article a boundary layer analysis has been carried out to examine the Darcy-Forchheimer flow of Carreau ferrofluid through a sensor duct between two parallel plates. The top plate is assumed to be squeezed whereas the lower plate is at rest. Inspection has been accomplished in the occupancy of thermal radiation and magnetic dipole. Thermal conductivity is also considered, which is determined by temperature. After incorporating these speculations, dimensional equations supervising the flow and heat transfer distinctions are transfigured into a dimensionless system of differential equations by implementing similarity transformations. The result of squeezed flow index b, ferrohydrodynamic interaction beta*, porous medium permeability parameter S-1, local inertia coefficient S-2, Eckert number lambda, Prandtl number Pr, Curie temperature g, and Weissenberg number W-e on velocity and temperature curves are observed. The numerical solution for boundary layer momentum and energy equations is obtained. The present analysis demonstrates that velocity profile significantly drops owing to a rise in Weissenberg number.
机译:在本文中,已经采用边界层分析,以通过两个平行板之间的传感器管道来检查Carreau Ferrofluid的达西 - 前米流。假设顶板被挤压,而下板在休息处。在热辐射和磁性偶极子的占用中已经完成了检查。还考虑了导热性,其通过温度确定。在结合这些簇之后,通过实施相似性转换,监控流动和传热区别的尺寸方程被改变为差分方程的无量纲系统。挤压流量指数B,屈服介质相互作用β*,多孔介质渗透性参数S-1,局部惯量系数S-2,Eckert数量Lambda,Prandtl号Pr,居里温度G,以及Weissenberg编号,我们在速度和温度曲线上观察到的。获得了边界层动量和能量方程的数值解。本分析表明,由于Weissenberg数量的增加,速度曲线显着下降。

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