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Unsteady Two-Dimensional Stagnation-Point Flow and Heat Transfer of a Viscous, Compressible Fluid on an Accelerated Flat Plate

机译:加速平板上粘性可压缩流体的不稳定二维停滞点流动和热传递

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摘要

The general formulation and exact solution of the Navier-Stokes and energy equations regarding the problem of steady and unsteady two-dimensional stagnation-point flow and heat transfer is investigated in the vicinity of a flat plate. The plate is moving at time-dependent or constant velocity towards the main low Mach number free stream or away from it. The main stream impinges along z-direction on the flat plate with strain rate a and produces two-dimensional flow. The fluid is assumed to be viscous and compressible. The density of the fluid is affected by the existing temperature difference between the plate and potential far field flow. Suitably introduced similarity transformations are used to reduce the governing equations to a coupled system of ordinary differential equations. Finite Difference Scheme is used to solve these non-linear ordinary differential equations. The obtained results are presented over a wide range of parameters characterizing the problem. It is revealed that the significance of the increase of thermal expansion coefficient, β, and wall temperature on velocity and temperature distributions is much more noticeable for a plate moving away from impinging flow. Moreover, negligible shear stress and heat transfer is reported between the plate and fluid viscous layer close to the plate for a wide range of β coefficient when the plate moves away from incoming far field flow.
机译:在平板附近研究了关于稳态和非稳态二维滞止点流动和传热问题的Navier-Stokes和能量方程的一般公式和精确解。板以时间相关或恒定的速度向着主要的低马赫数自由流或远离其运动。主流以应变率a沿z方向撞击平板,并产生二维流。假定流体是粘性和可压缩的。流体的密度受板和潜在的远场流之间存在的温差影响。适当引入的相似变换用于将控制方程式简化为常微分方程式的耦合系统。有限差分方案用于求解这些非线性常微分方程。所获得的结果将在表征该问题的各种参数上给出。结果表明,热膨胀系数,β和壁温度的增加对速度和温度分布的影响对于板从撞击流中移开更为明显。此外,当板块远离进入的远场流时,在宽的β系数范围内,板块与靠近板块的流体粘性层之间的剪切应力和传热几乎可以忽略不计。

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