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Similarity analysis of MHD flow field and heat transfer of a second grade convection flow over an unsteady stretching sheet

机译:非稳态拉伸片上MHD流场与二级对流流动传热的相似性分析

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Unsteady magnetohydrodynamic (MHD) flow of a second grade fluid over a stretching sheet is a focus of this steady. Surface tension is considered to be varies linearly with temperature. The stretching velocity is defined in (Liu and Andersson in Int. J. Therm. Sci. 47(6):766-772, 2008). Similarity transformation reported by Abbas et al. (Math. Comput. Model. 48:518-526, 2008) are used to develop nonlinear system of differential equations coupled in velocity and temperature fields. The system is solved by the homotopy-analysis method (HAM), while the effects of different parameters such as the unsteadiness parameter S, film thickness, Hartmann number Ma, Prandtl number Pr, Thermocapillary number M, heat flux − θ ′ ( 0 ) $-heta'(0)$ , surface skin-friction coefficient f ″ ( 0 ) $f''(0)$ , free surface temperature θ ( 1 ) $heta(1)$ for flow field, and heat transfer are studied in this article.
机译:二级流体在拉伸片材上的不稳定磁流体动力(MHD)流是这种稳定的焦点。表面张力被认为是随温度线性变化的。拉伸速度在(Liu and Andersson in Int。J. Therm。Sci。47(6):766-772,2008)中定义。 Abbas等人报道了相似性转换。 (Math.Comput.Model.48:518-526,2008)用于开发在速度和温度场中耦合的微分方程的非线性系统。该系统通过同构分析方法(HAM)求解,而不同参数的影响例如不稳定参数S,膜厚度,Hartmann数Ma,Prandtl数Pr,热毛细管数M,热通量-θ'(0) $- theta'(0)$,表面皮肤摩擦系数f''(0)$ f''(0)$,自由表面温度θ(1)$ theta(1)$用于流场和传热在本文中进行研究。

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