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Onset of Natural Convection in Gas-gas System Induced by Bottom-up Transient Mass Diffusion

机译:自下而上的瞬时质量扩散在燃气系统中自然对流的发生

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Abstract:The onset of convection induced by transient mass diffusion in a stationary gas was successfully predicted with transient instability theory and simulated using a computational fluid dynamics (CFD) scheme. 2D time-dependent simulations were conducted for bottom-up diffusion of a light gas in a stagnant heavy gas. The results of simulations were used to calculate the transient Rayleigh number adopted from the theory of Tan and Thorpe (1996 and 1999). The average transient maximum Rayleigh number from the simulations is 707, which is close to the theoretical value of 817 for analogous bottom heating with constant heat flux. The simulated critical times of the onset of convection were in reasonably good agreement with the predicted values from theory.
机译:摘要:利用瞬态不稳定性理论成功地预测了稳态气体中瞬态质量扩散引起的对流,并使用计算流体动力学(CFD)方案对其进行了模拟。对停滞的重气中轻气的自下而上扩散进行了二维时间相关的模拟。仿真结果被用来计算瞬态瑞利数,该数采用了Tan和Thorpe(1996和1999)的理论。通过模拟得出的平均瞬态最大瑞利数为707,接近具有恒定热通量的类似底部加热的理论值817。对流发生的模拟临界时间与理论预测值相当吻合。

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