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Flow of Eyring-Powell liquid due to oscillatory stretchable curved sheet with modified Fourier and Fick’s model

Flow of Eyring-Powell liquid due to oscillatory stretchable curved sheet with modified Fourier and Fick’s model

作     者:M.IMRAN Z.ABBAS M.NAVEED M.IMRAN;Z.ABBAS;M.NAVEED

作者机构:Department of MathematicsThe Islamia University of BahawalpurBahawalpur 63100Pakistan Department of MathematicsKhwaja Fareed University of Engineering&Information TechnologyRahim Yar Khan 64200Pakistan 

出 版 物:《Applied Mathematics and Mechanics(English Edition)》 (应用数学和力学(英文版))

年 卷 期:2021年第42卷第10期

页      面:1461-1478页

核心收录:

学科分类:080103[工学-流体力学] 08[工学] 0801[工学-力学(可授工学、理学学位)] 

基  金:The authors are grateful to the respected reviewers for their positive comments and constructive ideas for improving the manuscript?s quality 

主  题:oscillatory stretchable curved surface magnetohydrodynamic(MHD) Eyring-Powell liquid Cattaneo-Christov double diffusion analytical technique 

摘      要:This study deals with the features of the mass and heat transport mechanism by adopting a modified version of Fourier and Fick’s model known as the CattaneoChristov double diffusive *** time-dependent magnetohydrodynamic(MHD)flow of the Eyring-Powell liquid across an oscillatory stretchable curved sheet in the presence of Fourier and Fick’s model is *** acquired set of flow equations is transformed into the form of nonlinear partial differential equations(PDEs)by applying appropriate similarity variables.A convergent series solution to the developed nonlinear equations is accomplished with the help of an analytical approach,i.e.,the homotopy analysis method(HAM).The consequences of diverse parameters,including the dimensionless EyringPowell liquid parameter,the radius of curvature,the Schmidt/Prandtl numbers,the ratio of the oscillatory frequency of the sheet to its stretchable rate constant,the mass and thermal relaxation variables involved in the flow,and the heat and mass properties,are displayed through graphs and *** is noted from this study that the amplitude of the pressure distribution rises for the high parametric values of the Eyring-Powell parameter.

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