Yang Yantao, Chen Wenyuan, Verzicco Roberto, Lohse Detlef
State Key Laboratory for Turbulence and Complex Systems, Department of Mechanics and Engineering Science, College of Engineering, Peking University, Beijing 100871, China;
Beijing Innovation Center for Engineering Science and Advanced Technology, Peking University, Beijing 100871, China.
Proc Natl Acad Sci U S A. 2020 Jun 30;117(26):14676-14681. doi: 10.1073/pnas.2005669117. Epub 2020 Jun 17.
When fluid stratification is induced by the vertical gradients of two scalars with different diffusivities, double-diffusive convection (DDC) may occur and play a crucial role in mixing. Such a process exists in many natural and engineering environments. Especially in the ocean, DDC is omnipresent since the seawater density is affected by temperature and salinity. The most intriguing phenomenon caused by DDC is the thermohaline staircase, i.e., a stack of alternating well-mixed convection layers and sharp interfaces with very large gradients in both temperature and salinity. Here we investigate DDC and thermohaline staircases in the salt finger regime, which happens when warm saltier water lies above cold fresher water and is commonly observed in the (sub)tropic regions. By conducting direct numerical simulations over a large range of parameters, we reveal that multiple equilibrium states exist in fingering DDC and staircases even for the same control parameters. Different states can be established from different initial scalar distributions or different evolution histories of the flow parameters. Hysteresis appears during the transition from a staircase to a single salt finger interface. For the same local density ratio, salt finger interfaces in the single-layer state generate very different fluxes compared to those within staircases. However, the salinity flux for all salt finger interfaces follows the same dependence on the salinity Rayleigh number of the layer and can be described by an effective power law scaling. Our findings have direct applications to oceanic thermohaline staircases.
当由具有不同扩散率的两种标量的垂直梯度引起流体分层时,可能会发生双扩散对流(DDC),并且在混合过程中起着关键作用。这样的过程存在于许多自然和工程环境中。特别是在海洋中,由于海水密度受温度和盐度影响,DDC无处不在。由DDC引起的最引人入胜的现象是热盐阶梯,即一堆交替的充分混合的对流层以及温度和盐度都具有非常大梯度的尖锐界面。在这里,我们研究盐指区域中的DDC和热盐阶梯,当温暖的咸水位于寒冷的淡水之上时就会出现这种情况,这在(亚)热带地区很常见。通过在大范围参数上进行直接数值模拟,我们揭示即使对于相同的控制参数,在指状DDC和阶梯中也存在多个平衡状态。不同的状态可以从不同的初始标量分布或流动参数的不同演化历史建立。在从阶梯过渡到单个盐指界面的过程中会出现滞后现象。对于相同的局部密度比,单层状态下的盐指界面与阶梯内的盐指界面相比产生非常不同的通量。然而,所有盐指界面的盐度通量对层的盐度瑞利数具有相同的依赖性,并且可以用有效的幂律标度来描述。我们的发现对海洋热盐阶梯有直接应用。