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Convective flows of micropolar fluids from radiate isothermal porous surfaces with viscous dissipation and Joule heating

机译:来自辐射等温多孔表面的微极性流体的对流,具有粘性耗散和焦耳热

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In this study, the steady laminar free-forced convective flow and heat transfer of micropolar fluids past a vertical radiate isothermal permeable surface with viscous dissipation and Joule heating is investigated numerically. The local similarity solutions for the flow, micro-rotation (angular velocity) and heat transfer characteristics are illustrated graphically for various material parameters. The effects of the pertinent parameters on the local skin friction coefficient, plate couple stress and the rate of heat transfer are also calculated. It was shown that micropolar fluids presented lower viscous drag and heat transfer values than those of the Newtonian fluids. The effect of radiation on the rate of heat transfer in a weakly concentrated micropolar fluid is higher than a strongly concentrated micropolar fluid. Results also show that full radiation has significant effect on the rate of heat transfer compared to the linear radiation.
机译:在这项研究中,数值研究了微极性流体经过垂直辐射等温可渗透表面并具有粘性耗散和焦耳热的稳定层流自由力对流和传热。对于各种材料参数,以图形方式说明了流动,微旋转(角速度)和传热特性的局部相似性解决方案。还计算了相关参数对局部皮​​肤摩擦系数,板对应力和传热速率的影响。结果表明,微极性流体比牛顿流体具有更低的粘性阻力和热传递值。辐射对弱浓缩微极性流体中传热速率的影响高于强浓缩微极性流体。结果还表明,与线性辐射相比,全辐射对传热速率有显着影响。

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