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Simultaneous impact of nonlinear thermal radiation and heat source/sink in stagnation point flow of viscous nanomaterial
Indian Journal of Physics ( IF 2 ) Pub Date : 2019-06-06 , DOI: 10.1007/s12648-019-01510-x
Faisal Shah , M. Ijaz Khan , T. Hayat , A. Alsaedi

An attempt has been made to study the consequences of stagnation point flow of nanomaterial toward nonlinear variable sheet. Nanoparticles comprise Brownian movement and thermophoresis effects. Thermal radiation and convective boundary conditions are considered. Applied magnetic flux of strength (\(B_{0}\)) is implemented in vertical direction. The nonlinear system is tackled through homotopy method. Energy equation is modeled in the presence of thermal radiation, convective conditions and heat generation/absorption. The impact of several flow variables on the momentum, energy and concentration is graphically discussed. Concluding remarks are presented.

中文翻译:

非线性热辐射和热源/热沉同时对粘性纳米材料的滞流点的影响

已经尝试研究纳米材料停滞点流向非线性可变片的后果。纳米粒子具有布朗运动和热泳效应。考虑了热辐射和对流边界条件。施加的强度(\(B_ {0} \))的磁通量在垂直方向上实现。非线性系统通过同伦方法解决。在存在热辐射,对流条件和生热/吸收的情况下对能量方程建模。图形化地讨论了几个流量变量对动量,能量和浓度的影响。最后的结论。
更新日期:2019-06-06
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