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首页> 外文期刊>Journal of geophysical research. Planets >Layering by Double-Diffusive Convection in the Subsurface Oceans of Europa and Enceladus
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Layering by Double-Diffusive Convection in the Subsurface Oceans of Europa and Enceladus

机译:木卫二和土卫二地下海洋的双扩散对流分层

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摘要

Subsurface oceans rich in salts may be prevalent in the icy worlds of the outer solar system. Surface observations have led to various hypotheses for the transport of materials from the seafloor to the surface by hydrothermal plumes, and raise questions about heat transfer mechanisms. Chemical heterogeneity affects the vigor of convection, the forms of plumes, the generation and destruction of stratified or finger structures in the ocean, and thus the transport of heat and materials from the interior to the surface. Here, we investigate the layering phenomenon in a double-diffusive convection system, which can occur when both the temperature and concentration influence the density of the fluid. The persistence of layers may depend on the buoyancy ratio, the Rayleigh number, boundary conditions, and initial conditions, which alter the chemical distribution and thus the balance between thermal and chemical buoyancies. Our simulations suggest that the layering could exist for a longer duration if the buoyancy ratio is raised with boundary conditions that maintain a large concentration difference. When the layers are present, heat and material transport are significantly inhibited through the subsurface ocean from the silicate interior to the base of the icy shell.
机译:地下海洋丰富的盐可能是普遍的在太阳系外的冰冷的世界。观察了各种表面假设材料的运输海底热液表面羽流,提高传热问题机制。活力的对流,形式的羽毛分层或生成和破坏手指结构在海洋里,因此从内部热量和材料的运输浮出水面。double-diffusive对流现象系统,它既可以发生在温度的密度和浓度的影响液体。瑞利数,浮力比边界条件和初始条件,改变化学分布,从而平衡与热化学浮力。模拟表明,分层可能存在较长的时间,如果是浮力的比例提高维护的边界条件较大的浓度差。存在,热量和物质运输吗通过地下显著抑制海洋的硅酸盐内部的基础冰冷的外壳。

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