首页> 外文期刊>International Journal of Heat and Mass Transfer >INTERFACIAL BREAKDOWN OF DOUBLE-DIFFUSIVE CONVECTIVE LAYERS BY A HORIZONTAL TEMPERATURE GRADIENT
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INTERFACIAL BREAKDOWN OF DOUBLE-DIFFUSIVE CONVECTIVE LAYERS BY A HORIZONTAL TEMPERATURE GRADIENT

机译:水平温度梯度双扩散对流层的界面破坏

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摘要

A two-layer,salt-stratified system destabilized and mixed by lateral heating and cooling is studied experimentally using three different enclosures. The following conditions are considered: thermal Rayleigh number Ra_T=2 x10~7-7 x10~8 and initial buoyancy ratio N_i=0.441-0.882. Kelvin-Helmholtz vortices occur, in the initial stages before mixing ,within the interface that separates the top and bottom convective layers due to shear instabilities. After that, the interface is significantly tilted and is rolled up near the hot and cold walls, while following the downward migration of the interface at the cold wall, the fluid in the bottom layer penetrates into the top layer along the hot wall, indicating the onset of mixing processes depend on the thermal Rayleigh number and initial buoyancy ratio. Finally we propose a correlation for the dimensionless mixing time valid for initial buoyancy ratios less than unity.
机译:使用三个不同的外壳,对通过侧向加热和冷却造成的不稳定和混合的两层盐分层系统进行了实验研究。考虑以下条件:热瑞利数Ra_T = 2 x10〜7-7 x10〜8,初始浮力比N_i = 0.441-0.882。开尔文-亥姆霍兹旋涡发生在混合之前的初始阶段,由于剪切不稳定性,在分隔顶部和底部对流层的界面内。此后,界面显着倾斜并在热壁和冷壁附近卷起,同时随着界面在冷壁处的向下迁移,底层中的流体沿热壁渗透到顶层,表明混合过程的开始取决于热瑞利数和初始浮力比。最后,我们提出了一种有效的无因次混合时间的相关性,该时间对于初始浮力比小于1的有效。

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