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Mixed convection flow along a vertical plate subjected to time-periodic surface temperature oscillations

机译:沿垂直板的混合对流流过表面周期性的温度振荡

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摘要

The effect of the periodic oscillations of the surface temperature with time on the mixed convection from a vertical plate is investigated. The problem has been simplified by employing the laminar boundary layer and Boussinesq approximations. The fully implicit finite-difference scheme is used to solve the dimensionless governing equations. The results for the laminar flow of air having Pr = 0.72 and water having Pr = 7.00 are presented for an isothermal flat plate and for the periodic oscillation of the temperature on the plate. The results show the steady periodic variation of the Nusselt number and friction coefficient for both aiding and opposing flows with different amplitudes and frequencies of the oscillating surface temperature. For both aiding and opposing flow, both the Nusselt number and the friction coefficient oscillate with the oscillation of the plate temperature and for some cases (at high amplitudes and frequencies) the Nusselt number becomes negative. For constant Prandtl number and Richardson number, the cyclic average values of the Nusselt number are decreasing with increasing either the amplitude or the frequency of the surface temperature oscillations. The cyclic average values of the friction coefficient, for all the cases considered, are found to be constant and approximately equal to the values for non-oscillating surface temperature.
机译:研究了表面温度随时间的周期性振荡对垂直板混合对流的影响。通过使用层边界层和Boussinesq逼近简化了问题。完全隐式有限差分方案用于求解无量纲的控制方程。对于等温平板和温度在平板上的周期性波动,给出了Pr = 0.72的空气和Pr = 7.00的水的层流结果。结果表明,具有不同振幅和频率的振荡表面温度的助流和逆流的努塞尔数和摩擦系数的稳态周期性变化。对于辅助流动和反向流动,努塞尔数和摩擦系数都随着板温度的波动而振荡,并且在某些情况下(在高振幅和高频率下),努塞尔数变为负数。对于恒定的Prandtl数和Richardson数,随着表面温度振荡的幅度或频率增加,Nusselt数的循环平均值会减小。对于所有考虑的情况,发现摩擦系数的循环平均值是恒定的,并且近似等于非振荡表面温度的值。

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