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Salt finger convection at marginal stability

机译:边缘稳定性的盐指对流

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摘要

Double diffusive salt fingers are alternating rising and falling convective structures that form due to density variation driven by varying diffusivity of the components. The degree of compensation between the component in terms of their effects on density stratification is measured by a dimensionless quantity, density ratio (R-rho). Salt fingers can form when density stability ratio R-rho lies in the range 1 < R-rho < tau(-1), where tau is the diffusivity ratio. However, lately a new finger regime has been observed in the experiments of Hage and Tilgner [Phys. Fluids, 2010, 22, 076603-076607], where finger convection occurs even for R-rho < 1. It is observed in oceans that salt finger forms at low R-rho and distinctive finger formation occurs when R-rho -> 1. However, critical information such as convective structures and fluxes are still unknown concerning what exactly happens at marginal stability (R-rho = 1). There has been a comprehensive study of salt finger convection at R-rho > 1 but scarcely any literature exists that has explored finger behaviour at R-rho = 1. In this paper we study the unexplored finger convection regimes numerically in a large range of governing parameter, for systems initially at R-rho = 1.
机译:双扩散盐手指是交替的上升和下降的对流结构,其由于通过各自的组分的不同扩散性驱动而形成的形式。通过对密度分层的影响而言,组分之间的补偿程度通过无量纲量,密度比(R-ROR)测量。当密度稳定比R-rho位于1 1时,在海洋中观察到盐手指形成的盐手指形成。然而,关于对流结构和助熔剂的关键信息仍然有关在边缘稳定性(R-ROO = 1)恰恰发生的内容。在R-RORO> 1的盐手指对流进行了综合研究,但几乎没有任何文学存在,这些文学存在于R-ROR = 1中探索了手指行为。在本文中,我们在大量管理范围内以数值方式研究未开发的手指对流制度参数,最初在R-RHO = 1处的系统。

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