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首页> 外文期刊>International Journal of Thermal Sciences >Flow and heat transfer at a stagnation-point over an exponentially shrinking vertical sheet with suction
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Flow and heat transfer at a stagnation-point over an exponentially shrinking vertical sheet with suction

机译:吸力呈指数收缩的垂直薄片上的停滞点处的流动和传热

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摘要

This paper investigate theoretically the problem of steady laminar two-dimensional boundary layer flow and heat transfer of an incompressible viscous fluid at a stagnation point over an exponentially shrinking vertical sheet with suction. In this study, we assume that the shrinking velocity and wall temperature have specific exponential function form. An appropriate similarity transformation is employed to transform the governing equations in partial differential equations form to similarity equations in ordinary differential equations form. The resulting equations are then solved numerically using shooting technique with Maple implementation. The influence of mixed convection/buoyancy parameter λ, suction parameter s and shrinking variable c/a on the flow and heat transfer characteristics is examined and discussed. Numerical results indicate that the presence of buoyancy force would contribute to the presence of triple solutions to the flow and heat transfer for particular value of pertinent parameters.
机译:本文从理论上研究了稳定的层流二维边界层流动和不可压缩粘性流体在驻点上呈指数收缩的垂直吸力吸力的滞流问题。在这项研究中,我们假设收缩速度和壁温具有特定的指数函数形式。采用适当的相似性变换将偏微分方程形式的控制方程式转换为普通微分方程形式的相似性方程式。然后使用带有Maple实现的射击技术对所得方程进行数值求解。研究并讨论了混合对流/浮力参数λ,吸力参数s和收缩变量c / a对流动和传热特性的影响。数值结果表明,对于相关参数的特定值,浮力的存在将有助于流动和传热的三重解的存在。

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