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The Effects of Gravity Modulation on The Instability of Double-Diffusive Convection in a Horizontal Tank

机译:重力调制对水平罐中双扩散对流不稳定性的影响

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摘要

The effects of gravity modulation on the instability of double-diffusive convections in a horizontal tank with aspect ratio (width/height) of 11 have been investigated by experiments and numerical simulations. The stably stratified fluid layer is set up with ethanol-water solution of 0.0 and 2.0% (by weight). The tank is fixed on a platform that can oscillate in the vertical direction. A constant temperature difference is maintained across the tank at thermal Rayleigh number . The fluid layer becomes unstable as the initially stable solute gradient slowly decreases due to the non-diffusive boundary conditions. The experiments determine that the instability onset under steady gravity is at with onset vortices of wavelength and oscillatory frequency . When the tank is oscillated at modulation frequency and amplitude , the fluid layer is destabilized slightly with a critical and onset vortices of and . A two-dimensional numerical simulation has accurately reproduced the experimental results of steady gravity, and demonstrated that the slight destability effect of gravity modulation is contributed by the asymmetry of the actual gravity modulation.Further simulations have yielded following results: (1) Under steady gravity, the kinetic energy and mechanical work components oscillate synchronously with . Under modulated gravity, they only oscillate synchronously with when is low, whereas not only synchronously with locally but also synchronously with globally when is high; (2) The resonance phenomenon predicted by Chen (2001) also exists under the present lab conditions. Such instability is in the sub-harmonic mode and the destability effect increases as increases. (3) The double-diffusive fluid layer may experience density-mode instability before the double-diffusive instability onset at certain and . Such density-mode instability is generally in the sub-harmonic mode, although it may be in the synchronous mode when is low and is large. This instability accelerates the mixing of the density gradient across the fluid layer and thus affects the succeeding double-diffusive instability; (4) When the background gravity is absent, the purely modulated gravity destabilizes the fluid layer when is low. On the contrary, it stabilizes the fluid layer when is high and the instability onset is in the synchronous mode.
机译:通过实验和数值模拟研究了重力调制对纵横比(宽度/高度)为11的水平罐中双扩散对流不稳定性的影响。稳定分层的流体层用0.0和2.0%(重量)的乙醇-水溶液配制。储罐固定在可以在垂直方向振动的平台上。整个油箱以热瑞利数保持恒定的温差。由于最初的稳定溶质梯度由于非扩散边界条件而缓慢降低,因此流体层变得不稳定。实验确定了在稳定重力作用下的失稳发生在波长和振荡频率的漩涡中。当储罐以调制频率和振幅振荡时,流体层的临界和起始涡旋为和时略有不稳定。二维数值模拟准确地再现了稳态重力的实验结果,并证明了重力调制的轻微失稳效应是由实际重力调制的不对称性引起的。进一步的仿真得出以下结果:(1)在稳态重力下时,动能和机械功分量与γ同步振荡。在调制重力作用下,它们仅在低时与之同步振荡,而在高时不仅与局部同步,而且与全局同步。 (2)Chen(2001)预测的共振现象在当前实验室条件下也存在。这种不稳定性处于次谐波模式,并且不稳定效果随着增加而增加。 (3)双扩散流体层可能在一定的和之前出现双扩散不稳定,然后经历密度模式的不稳定性。这种密度模式的不稳定性通常在次谐波模式下,尽管在低而大的情况下可能处于同步模式。这种不稳定性加速了流体层上密度梯度的混合,从而影响了随后的双扩散不稳定性。 (4)当背景重力不存在时,纯调制重力在较低时会破坏流体层的稳定性。相反,当流体层高且不稳定开始处于同步模式时,它将使流体层稳定。

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  • 作者

    Yu Youmin;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 EN
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