首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Perturbation Analysis Of Radiative Effect On Free Convection flows In Porous Medium In The Presence Of Pressure work And Viscous Dissipation
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Perturbation Analysis Of Radiative Effect On Free Convection flows In Porous Medium In The Presence Of Pressure work And Viscous Dissipation

机译:压力功和粘性耗散存在下对多孔介质中自由对流流动的辐射影响的扰动分析

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The effect of thermal radiation with a regular three-parameter perturbation analysis has been studied for the effects in some free convection flows of Newtonian fluid-saturated porous medium. The effects of the thermal radiation, permeability of the porous medium, pressure stress work and viscous dissipation on the flows and temperature fields have been included in the analysis. Four different vertical flows have been analyzed, those adjacent to an isothermal surface, uniform heat flux surface, a plane plume and flow generated from a horizontal line energy source, and, a vertical adiabatic surface. Rosse-land approximation is used to describe the radiative heat flux in the energy equation. The numerical results of the perturbation analysis for four conditions are solved numerically by the fourth-order Runge-Kutta integration scheme. Numerical values of the main physical quantities are the skin friction and a heat transfer and total heat and mass converted downstream are presented in a tabular form with the parameters characterizing the radiation, permeability of the porous medium, pressure stress work and viscous dissipation. The obtained results are compared and a representative set is displayed graphically to illustrate the influences of the radiation, permeability of the porous medium, pressure stress work and viscous dissipation on the velocity and the temperature profiles.
机译:对于常规的三参数扰动分析,研究了热辐射的影响,以研究牛顿流体饱和多孔介质在某些自由对流中的影响。分析中包括了热辐射,多孔介质的渗透性,压力应力功和粘性耗散对流场和温度场的影响。已经分析了四种不同的垂直流,即与等温表面,均匀热通量表面,平面羽状流和由水平线能源产生的流以及垂直绝热表面相邻的垂直流。 Rosse-land逼近用于描述能量方程中的辐射热通量。通过四阶Runge-Kutta积分方案对四个条件下的摄动分析的数值结果进行了数值求解。主要物理量的数值是皮肤摩擦,并以表格形式显示了下游的热传递和总热量及转化的质量,这些参数表征了辐射,多孔介质的渗透性,压力应力功和粘性耗散。比较获得的结果,并以图形方式显示代表集,以说明辐射,多孔介质的渗透性,压力应力功和粘性耗散对速度和温度分布的影响。

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