首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Transpiration and Thermophoresis Effects on Non-Darcy Convective Flow Past a Rotating Cone with Thermal Radiation
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Transpiration and Thermophoresis Effects on Non-Darcy Convective Flow Past a Rotating Cone with Thermal Radiation

机译:对具有热辐射旋转锥体的非达西对流流动的蒸腾和热孔效应

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摘要

In this article, mathematical model is developed for transport phenomena in an incompressible viscous fluid regime adjacent to a rotating vertical cone with thermal radiation and transpiration effects. The governing equations for the pertinent geometry are non-dimensionalized by employing specified transformations. A set of resultant equations are solved by numerical method. The solutions of this model are carried out under physical realistic boundary conditions to compute velocities, temperature and concentration functions distributions. The results are compared with previously available existing results. The excellent agreement has been found. The effect of thermal radiation, transpiration (surface injection/suction) and Forchheimer parameters, thermophoretic coefficient and relative temperature difference parameter on flow characteristics is illustrated graphically. It is observed that substantial influence has been exerted on flow characteristics, heat transfer rate (Nusselt number) and mass transfer rate (Sherwood number) for various values of transpiration parameter. The wall thermophoretic velocity changes according to the variation of physical parameters.
机译:在本文中,在邻近旋转垂直锥形的不可压缩的粘性流体状态下开发数学模型,其具有热辐射和蒸腾效应。通过采用指定的转换,相关几何的控制方程是非维性化的。通过数值方法解决了一组结果方程。该模型的解决方案在物理现实边界条件下进行,以计算速度,温度和浓度函数分布。将结果与以前可用的现有结果进行比较。已经找到了很好的协议。图形地示出了热辐射,蒸腾(表面喷射/抽吸)和前铬π参数,蒸发系数和相对温度差参数的影响。观察到,对于各种蒸腾参数的各种值,已经施加了对流动特性,传热速率(露珠数)和传质数(舍伍德数)的实质性影响。壁硫化速度根据物理参数的变化而变化。

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