首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Convective Heat and Mass Transfer in Magneto Walter’s B Nanofluid Flow Induced by a Rotating Cone
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Convective Heat and Mass Transfer in Magneto Walter’s B Nanofluid Flow Induced by a Rotating Cone

机译:旋转锥在磁沃尔特B纳米流体流中的对流传热和传质

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摘要

This work explores theoretical analysis for time-dependent flow of a Nano Walter's B fluid on a rotational cone under magnetic regime. Angular velocity is taken as a reverse linear function of time near and away from the cone to obtain self-similar solutions. The analytical result of reduced nonlinear system has been achieved via optimal homotopy analysis method to simulate the flow performance graphically. Comparison with the published material is also a salient feature of the present exploration that validates the obtained results. It is observed that heat and mass transfer rates have contradictory effects on Brownian motion and thermophoresis parameters, respectively.
机译:这项工作探索了磁性条件下旋转锥上纳米沃尔特B流体随时间变化的理论分析。角速度被视为圆锥体附近和远离圆锥体时间的反线性函数,以获得自相似解。简化的非线性系统的分析结果已通过最佳同伦分析方法以图形方式模拟流动性能而获得。与已发表的材料进行比较也是当前探索的一个突出特征,该特征验证了所获得的结果。观察到传热和传质速率分别对布朗运动和热泳参数有矛盾的影响。

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