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Similarity Solutions of Unsteady Three-Dimensional Stagnation Flow and Heat Transfer of a Viscous, Compressible Fluid on an Accelerated Flat Plate

机译:加速平板上非定常三维滞流与粘性可压缩流体传热的相似解

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The most general form of the problem of stagnation-point flow and heat transfer of a viscous, compressible fluid impinging on a flat plate is solved in this paper. The plate is moving with a constant or time-dependently variable velocity and acceleration toward the impinging flow or away from it. In this study, an external low Mach number flow impinges on the plate, along z-direction, with strain rate a and produces three-dimensional flow. The wall temperature is assumed to be maintained constant, which is different from that of the main stream. The density of the fluid is affected by the temperature difference existing between the plate and the incoming far-field flow. Suitably introduced similarity transformations are used to reduce the unsteady, three-dimensional, Navier-Stokes, and energy equations to a coupled system of nonlinear ordinary differential equations. The fourth-order Runge-Kutta method along with a shooting technique is applied to numerically solve the governing equations. The results are achieved over a wide range of parameters characterizing the problem. It is revealed that the significance of the aspect ratio of the velocity components in × and y directions, λ parameter, is much more noticeable for a plate moving away from impinging flow. Moreover, negligible heat transfer rate is reported between the plate and fluid viscous layer close to the plate when the plate moves away with a high velocity.
机译:本文解决了粘滞,可压缩流体撞击平板的停滞点流动和传热问题的最一般形式。板以恒定或随时间变化的速度和加速度朝着冲击流或远离冲击流运动。在这项研究中,外部低马赫数流沿Z方向以应变率a撞击板,并产生三维流。假定壁温保持恒定,这与主流温度不同。流体的密度受板与进入的远场流之间存在的温差的影响。适当引入的相似变换可用于将不稳定的三维Navier-Stokes能量方程简化为非线性常微分方程的耦合系统。应用四阶Runge-Kutta方法和射击技术对控制方程进行数值求解。在表征该问题的各种参数范围内均可获得结果。结果表明,对于沿远离冲击流的板运动,在x和y方向上速度分量的纵横比(λ参数)的意义更加明显。而且,当板以高速移动时,在板和靠近板的流体粘性层之间的传热速率可忽略不计。

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