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Soret and Dufour effects on MHD non-Darcian radiating convective flow of micropolar fluid past an inclined surface with non-uniform surface heat source or sink and chemical reaction

机译:Soret和Dufour对MHD非Darcian辐射微息液体辐射对流流动的倾斜表面与非均匀表面热源或水槽和化学反应的影响

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The present study investigates the effects of Soret and Dufour on MHD non- Darcy convective flow of a viscous incompressible radiating micropolar fluid past an inclined permeable plate with non-uniform heat source or sink and chemical reaction. The flow field with partial differential equations are converted to a system of nonlinear coupled ordinary differential equations by similarity transformations and solved employing shooting method. Swiftness in the momentum of the fluid is observed as the Darcian and fluid parameter ascends. Speed of the fluid in angular rotation ascends as the material parameter or sheet inclination or magnetic parameter increases. Molecular diffusion rate is more as the microparticles undergo chemical reactions. While the thermal distribution rate reduces because of the reactions. Rest of the results are interpreted graphically. A good agreement is observed with the previous publications. The presence of chemical reaction makes the problem industrially applicable taking the case of heterogeneous reactions.
机译:本研究调查了SORET和DUFOUR对粘性不可压缩的微柱液体的MHD非达通流动的影响,所述微多波利达流体经过具有非均匀热源或水槽和化学反应的倾斜可渗透板。具有局部微分方程的流场通过相似性变换转换为非线性耦合常微分方程的系统,并解决了采用拍摄方法。随着Darcian和流体参数的升值,观察到流体势头的迅速。随着材料参数或薄片倾斜或磁性参数增加,流体中的流体的速度升高。分子扩散速率更像微粒经历化学反应。虽然热分配率因反应而减少。结果的其余结果被图形方式解释。以前的出版物观察到良好的一致性。化学反应的存在使得在工业上适用的问题是在异质反应的情况下进行。

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