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Viscous dissipation and joule heating effect on MHD flow and heat transfer past a stretching sheet embedded in a porous medium

机译:粘性耗散和焦耳加热效果对MHD流动和传热通过嵌入多孔介质的拉伸薄片

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摘要

An analysis is made to illustrate the MagnetoHydroDynamics (MHD) flow and gradient heat transport of a Newtonian fluid over a stretching sheet embedded in a porous matrix. The governing nonlinear partial differential equations are reconstituted as ordinary differential equations utilizing suitable similarity transformation and then treated numerically using 4th order Runge-Kutta method along with shooting technique and analytically by Homotopy Perturbation Method. The verification of present study with earlier works serves as the benchmark of reliability of the present study. The important outcomes of this study are: porous parameter (Kp) acts as aiding force i.e when Kp is increased from 0.1 to 10 gradually there is a significant growth in velocity and after that rate of increment gets slowdown, greater Eckert number and joule heating parameter cause a rise in temperature as well as enhance the thermal boundary thickness. Consequently rate of heat transfer diminishes as thickness leads to low heat transfer coefficient. The applications of this study are shown in: multiple heating devices and industrial processes such as incandescent light bulb's filament emitting light, food processing and polymer processing etc.
机译:对分析来说明磁力学(MHD)流体在嵌入多孔基质中的拉伸板上的牛顿流体的流动和梯度热传输。控制非线性偏微分方程被重构为利用合适的相似性转化重构为常微分方程,然后使用第四阶runge-Kutta方法在数值上与拍摄技术进行数值处理,通过同型扰动方法分析。与早期作品的本研究验证是本研究可靠性的基准。本研究的重要结果是:多孔参数(KP)作为辅助力,即KP逐渐增加0.1至10时,速度速度显着增长,并且在该增量速率下降后,速度变慢,更大的蚀刻器数和焦耳加热参数。导致温度升高,并提高热边界厚度。因此,随着厚度导致低传热系数的热传递速率减小。本研究的应用示于:多种加热装置和工业过程,如白炽灯泡的灯丝发光,食品加工和聚合物处理等。

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