Biomagnetic fluid flow past a stretching/shrinking sheet with slip conditions using lie group analysis

M. G. Murtaza, E. Tzirtzilakis, M. Ferdows
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Abstract

The purpose of this paper is to investigate the boundary layer flow and heat transfer of biomagnetic fluid over a stretching/shrinking sheet in the presence of magnetic dipole. We use Lie group transformation to develop similarity transformation. Using this special form of transformation namely Lie group transformation, the governing nonlinear partial differential equations are reduced into a system of couple nonlinear ordinary differential equations subject to associated boundary conditions. The reduced resulting equation are then solved numerically by using MATLAB routine boundary value problem solver bvp4c. The effects of the pertinent parameters such as ferromagnetic parameter, suction parameter, stretching parameter and momentum slip parameter on the flow field and temperature as well as skin friction coefficient and heat transfer rate are presented and discussed through graphically in this study. Results indicate that the dual solutions exits for some specific range of governing parameter. The results of the present study have been compared with those reported by previous results and found a very good agreement that supports the validity of the present analysis and the accuracy of our numerical computations.The purpose of this paper is to investigate the boundary layer flow and heat transfer of biomagnetic fluid over a stretching/shrinking sheet in the presence of magnetic dipole. We use Lie group transformation to develop similarity transformation. Using this special form of transformation namely Lie group transformation, the governing nonlinear partial differential equations are reduced into a system of couple nonlinear ordinary differential equations subject to associated boundary conditions. The reduced resulting equation are then solved numerically by using MATLAB routine boundary value problem solver bvp4c. The effects of the pertinent parameters such as ferromagnetic parameter, suction parameter, stretching parameter and momentum slip parameter on the flow field and temperature as well as skin friction coefficient and heat transfer rate are presented and discussed through graphically in this study. Results indicate that the dual solutions exits for some specific range of governing parameter. The resul...
利用李群分析,生物磁流体流过具有滑移条件的拉伸/收缩薄片
本文的目的是研究磁偶极子存在下生物磁流体在拉伸/收缩薄片上的边界层流动和传热。利用李群变换发展相似变换。利用这种特殊的变换形式,即李群变换,将控制非线性偏微分方程简化为具有相关边界条件的一对非线性常微分方程系统。然后利用MATLAB常规边值问题求解器bvp4c对简化后的方程进行数值求解。本文以图形的形式给出并讨论了铁磁参数、吸力参数、拉伸参数和动量滑移参数等相关参数对流场和温度、表面摩擦系数和换热率的影响。结果表明,在一定的控制参数范围内存在对偶解。本文的研究结果与前人的研究结果进行了比较,发现了很好的一致性,支持了本文分析的有效性和数值计算的准确性。本文的目的是研究磁偶极子存在下生物磁流体在拉伸/收缩薄片上的边界层流动和传热。利用李群变换发展相似变换。利用这种特殊的变换形式,即李群变换,将控制非线性偏微分方程简化为具有相关边界条件的一对非线性常微分方程系统。然后利用MATLAB常规边值问题求解器bvp4c对简化后的方程进行数值求解。本文以图形的形式给出并讨论了铁磁参数、吸力参数、拉伸参数和动量滑移参数等相关参数对流场和温度、表面摩擦系数和换热率的影响。结果表明,在一定的控制参数范围内存在对偶解。试验结果……
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