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Three-Dimensional Flow and Heat Transfer Past a Permeable Exponentially Stretching/Shrinking Sheet in a Nanofluid

机译:三维流动和传热通过纳米流体中可渗透的指数拉伸/收缩片

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摘要

The three-dimensional flow and heat transfer of a nanofluid over a stretching/shrinking sheet is investigated. Numerical results are obtained using bvp4c in MATLAB. The results show nonunique solutions for the shrinking case. The effects of the stretching/shrinking parameter, suction parameter, Brownian motion parameter, thermophoresis parameter, and Lewis number on the local skin friction coefficient and the local Nusselt number are studied. Suction increases the solution domain. Furthermore, as the sheet is shrunk in the x-direction, suction increases the skin friction coefficient in the same direction while decreasing the skin friction coefficient in the y-direction. The local Nusselt number is consistently lower for higher values of thermophoresis parameter and Lewis number. On the other hand, the local Nusselt number increases as the Brownian motion parameter increases.
机译:研究了在拉伸/收缩片上纳米流体的三维流动和热传递。使用MATLAB中的BVP4C获得数值结果。结果显示了扰乱案例的非纯解决方案。研究了拉伸/收缩参数,吸入参数,布朗运动参数,热量计数和Lewis数对本地皮肤摩擦系数和本地营养数的影响。吸力增加了溶液结构域。此外,随着片材在X方向上缩小,抽吸在相同方向上增加皮肤摩擦系数,同时降低Y方向上的皮肤摩擦系数。当地营养数量持续降低热量富集参数和刘易斯数的较高值。另一方面,随着布朗运动参数的增加,本地营养数增加。

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