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Convective heat transfer in an electrically conducting micropolar fluid at a stretching surface with uniform free stream

机译:导电微极性流体在拉伸表面上具有均匀自由流的对流传热

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The problem of convective heat transfer for a micropolar fluid in the presence of uniform magnetic field is investigated near an isothermal-stretching sheet. This has been done under the effect of buoyancy force. The sheet is linearly stretched in the presence of a uniform free stream of constant velocity and temperature. Numerical solutions for the governing boundary layer equations for a range of values of magnetic, vortex viscosity and microrotation parameters, also, Grashoff number obtained by applying an efficient numerical technique based on shooting method. The effects of these parameters examined on the velocity of fluid, temperature distribution and angular velocity of microstructures as well as the coefficient of heat flux and shearing stress at the plate. (C) 2002 Elsevier Science Inc. All rights reserved. [References: 19]
机译:在等温拉伸片材附近研究了在存在均匀磁场的情况下微极性流体的对流传热问题。这是在浮力的作用下完成的。在恒定速度和温度的均匀自由流的存在下,片材被线性拉伸。通过应用基于射击方法的有效数值技术获得的一系列磁,涡旋粘度和微旋转参数值的控制边界层方程的数值解,以及Grashoff数。这些参数对流体的速度,温度分布和微结构的角速度以及在板上的热通量系数和剪切应力的影响。 (C)2002 Elsevier Science Inc.保留所有权利。 [参考:19]

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