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首页> 外文期刊>Journal of Physical Oceanography >Layering in a Flow with Diffusively Stable Temperature and Salinity Stratification
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Layering in a Flow with Diffusively Stable Temperature and Salinity Stratification

机译:在具有稳定的温度和盐度分层的流中分层

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Laboratory experiments were conducted to study the formation of layers and interfaces in a fluid stratified with two scalars. Fluid with initially linear, diffusively stable temperature and salinity profiles was stirred using an arrangement of horizontally oscillating, vertical rods. Layers occurred when the density ratio, or the ratio of the contributions of temperature and salinity to the density gradient, was small, but they did not form in similar conditions of turbulence intensity and stratification strength when the density ratio was large. The difference in behavior is ascribed to differential diffusion, or the preferential transport of temperature, which occurred in all of the experiments. Eddy diffusivities were linearly proportional to ε_a/vN~2, where ε_a is an averaged rate of dissipation of turbulent kinetic energy. The mixing efficiency, computed as the ratio of potential energy change to work input to the system, increased with the density ratio. As previous researchers have found, the Phillips-Posmentier mechanism describes the final layered state but not the initial, evolving states of the system.
机译:进行了实验室实验,以研究在用两个标量分层的流体中层和界面的形成。使用水平振荡的垂直棒的布置搅拌具有最初线性的,扩散稳定的温度和盐度曲线的流体。当密度比或温度和盐度对密度梯度的贡献比较小时,会出现层,但当密度比较大时,它们不会在湍流强度和分层强度的相似条件下形成。行为上的差异归因于所有实验中发生的差异扩散或温度优先传输。涡流扩散率与ε_a/ vN〜2成线性比例关系,其中ε_a是湍动能的平均耗散率。混合效率(以势能变化与系统功输入的比值计算)随密度比增加。正如先前的研究人员所发现的那样,Phillips-Posmentier机制描述的是最终的分层状态,而不是系统的初始演化状态。

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