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Three-Dimensional Stagnation Flow and Heat Transfer of a Viscous, Compressible Fluid on a Flat Plate

机译:平板上粘性可压缩流体的三维停滞流和热传递

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The steady-state three-dimensional flow and heat transfer of a viscous, compressible fluid in the vicinity of stagnation point region on a flat plate with constant wall temperature is investigated by similarity solution approach, taking into account the variation of density of the fluid with respect to temperature. The free stream, along z-direction, impinges on the flat plate to produce a flow with different velocity components. An exact solution of the problem is obtained for the three dimensional case by the reduction of the Navier-Stokes and energy equations using appropriate similarity transformations introduced for the first time. The nonlinear ordinary differential equations are solved numerically using a finite difference scheme. Computations have been conducted for different values of the parameters characterizing the problem. The obtained results show that increasing the value of compressibility factor and wall temperature both cause the value of the velocity components and temperature gradients and pressure gradients in the vicinity of the plate to increase.
机译:利用相似解法,研究了壁温恒定的平板上滞点区域附近的粘性可压缩流体的稳态三维流动和传热。关于温度。沿z方向的自由流撞击在平板上,以产生具有不同速度分量的流。通过使用首次引入的适当相似变换来简化Navier-Stokes和能量方程,可以在三维情况下获得问题的精确解决方案。使用有限差分方案对非线性常微分方程进行数值求解。已经针对表征问题的参数的不同值进行了计算。所得结果表明,增加可压缩系数和壁温度都使板附近的速度分量和温度梯度和压力梯度值增加。

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