Comparison of Adomian Decomposition Method with Differential Transformation Method for Unsteady MHD Flow and Heat Transfer Over a Stretching/Shrinking Permeable Sheet with Ohmic Heating

Ebiwareme L., B. K.W., Davies O.A.
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引用次数: 1

Abstract

In this paper, two semi-analytical techniques were implemented to solve a two-dimensional unsteady MHD fluid flow and heat transfer through a stretching/shrinking permeable sheet with ohmic heating and viscous dissipation. The governing flow equations in PDE form were reduced to ordinary differential equations using appropriate similarity transformation. We obtained approximate expressions for the velocity and temperature profiles. Comparative results obtained employing Adomian decomposition method and differential transformation method were benchmarked against a numerical solution using Keller box scheme. Our findings revealed that the approximate analytical solution obtained using DTM is more dependable with fast convergence, highly accurate with minimal calculations and computationally convenient. However, the requirement of Adomian polynomials to tackle the nonlinear terms in ADM makes its execution sometimes cumbersome and difficult.
Adomian分解法与微分变换法在欧姆加热拉伸/收缩渗透片上非定常流动与传热的比较
本文采用两种半解析技术求解了二维非定常MHD流体在具有欧姆加热和粘性耗散的拉伸/收缩渗透片中的流动和传热问题。通过适当的相似变换,将偏微分方程转化为常微分方程。我们得到了速度和温度分布的近似表达式。将Adomian分解法和微分变换法的结果与Keller盒格式的数值解进行了比较。结果表明,采用DTM方法得到的近似解析解具有收敛速度快、计算精度高、计算方便等优点。然而,由于Adomian多项式需要处理ADM中的非线性项,使得它的执行有时很繁琐和困难。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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