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Heat transfer in a viscoelastic boundary layer flow through a porous medium

机译:粘弹性边界层中的热传递流经多孔介质

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摘要

This paper examines the viscoelastic fluid flow and heat transfer characteristics in a saturated porous medium over an impermeable stretching surface with frictional heating and internal heat generation or absorption. The heat transfer analysis has been carried out for two different heating processes, namely (i) with prescribed surface temperature (PST-case) and (ii) prescribed surface heat flux (PHF-case). The governing equations for the boundary layer flow problem result similar solutions. For the specified five boundary conditions, it is not possible to solve directly the resulting sixth-order nonlinear ordinary differential equation. For the present incompressible boundary layer flow problem with constant physical parameters, the momentum equation is decoupled from the energy equation. Two closed–form solutions for the momentum equation are obtained and identified the realistic solution of the physical problem. Exact solution for the velocity field and the skin-friction are obtained. Also, the solution for the temperature and the heat transfer characteristics are obtained in terms of Kummer’s function. Asymptotic results for the temperature function for large Prandtl numbers are presented. The work due to deformation in the energy equation, which is essential and escaped from the attention of researchers while formulating the visco-elastic boundary layer flow problems, is considered. Drastic variation in the values of heat transfer coefficient is observed when the work due to deformation is ignored.
机译:本文研究了在具有摩擦加热和内部热量产生或吸收的不渗透拉伸表面上的饱和多孔介质中的粘弹性流体流动和传热特性。已经针对两种不同的加热过程进行了传热分析,即(i)具有规定的表面温度(PST情况)和(ii)具有规定的表面热通量(PHF情况)。边界层流动问题的控制方程得出相似的解。对于指定的五个边界条件,不可能直接求解所得的六阶非线性常微分方程。对于具有恒定物理参数的当前不可压缩边界层流动问题,动量方程式与能量方程式解耦。获得了动量方程的两个封闭形式的解,并确定了物理问题的现实解。获得了速度场和皮肤摩擦的精确解。同样,根据库默尔函数获得温度和传热特性的解。给出了大Prandtl数的温度函数的渐近结果。考虑了由于能量方程变形而引起的功,这是必不可少的,并且在制定粘弹性边界层流动问题时已被研究人员忽略。当忽略由于变形引起的功时,可以观察到传热系数值的剧烈变化。

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