首页> 外文会议>IMECE2008;ASME international mechanical engineering congress and exposition >EFFECTS OF RADIATION AND VARIABLE THERMAL CONDUCTIVITY ON THE MHD FLOW OF A VISCOELASTIC FLUID AND HEAT TRANSFER OVER A STRETCHING POROUS SHEET
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EFFECTS OF RADIATION AND VARIABLE THERMAL CONDUCTIVITY ON THE MHD FLOW OF A VISCOELASTIC FLUID AND HEAT TRANSFER OVER A STRETCHING POROUS SHEET

机译:辐射和热导率对拉伸弹性多孔板上粘弹性流体MHD流动和传热的影响

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A numerical study on the effects of radiation and variable thermal conductivity on the flow and heat transfer in the boundary layer of a viscoelastic fluid (Walters' liquid B' model) over a stretching porous sheet in the presence of a magnetic field is studied. The momentum differential equation is solved exactly. Two cases of sheet surface conditions are considered - (ⅰ) PST case involving prescribed surface temperature and (ⅱ) PHF case involving prescribed heat flux at the surface. The energy equation is solved with the application of the shooting technique using the fourth order Runge-Kutta integration scheme. Numerical results are obtained for various values of non-dimensional parameters - which include among others, the Prandtl number (P), the Eckert number (E) and the Radiation number (N). The significant conclusions arc: (1) the momentum boundary layer can be minimized by considering the sheet to be influenced by a continuous suction of the fluid through the porous boundary and by choosing large values for the viscoelastic parameter and the magnetic parameter (2) an ideal combination for faster cooling of the thermal boundary layer would be to consider the suction velocity of the fluid along with a large value for the Prandtl number combined with small values for Radiation and Eckert numbers.
机译:研究了在磁场作用下辐射和可变热导率对拉伸弹性多孔片材上粘弹性流体(Walters液体B'模型)的边界层中流动和传热的影响的数值研究。动量微分方程被精确求解。考虑了两种情况下的片材表面状况-(ⅰ)涉及规定表面温度的PST情况和(ⅱ)涉及规定表面热通量的PHF情况。通过使用四阶Runge-Kutta积分方案的射击技术来求解能量方程。获得了各种无量纲参数值的数值结果,这些参数包括Prandtl数(P),Eckert数(E)和辐射数(N)等。得出的重要结论是:(1)可以考虑通过连续地吸引流体穿过多孔边界并通过选择较大的粘弹性参数和磁参数值来影响板,从而使动量边界层最小化。为了更快地冷却热边界层,理想的组合将是考虑流体的吸入速度以及Prandtl值的大值与Radiation和Eckert值的小值。

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