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An experimental study of stratified mixing caused by internal solitary waves in a two-layered fluid system over variable seabed topography

机译:海底地形两层流体系统内孤立波引起分层混合的实验研究

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Stratified mixing is observed in a wave flume on an internal solitary wave (ISW) of depression or elevation type propagating over a submarine ridge. The submarine ridges, which comprise the seabed topography, are either semicircular or triangular. Tests are performed in a series of combinations of submarine ridges with different heights and ISW in different amplitudes within a two-layer fluid system. When the thickness of the top layer is less than that of the lower layer (i.e., H_1< H_2), a depression-type ISW may produce a strong hydraulic jump with downwards motion and continuous eddy diffusion. During diffusion, the leading profile of the ISW transforms a wrapped vortex on the front face of the ridge, and a vortex separation at the apex of the ridge. Meanwhile, an elevation-type ISW causes a vortex in the lee of a submarine ridge, which resembles a surface solitary wave in terms of wave transmission process. The degree of wave-obstacle interaction is determined by energy loss, which is induced by submarine ridge blockage. The experiment results suggest that degree of blocking can be applied to classify various degrees of ISW-obstacle encounter in the stratified two-layer fluid system.
机译:在波状水槽中观察到分层混合,该波状水槽是在海底山脊上传播的凹陷或高程类型的内部孤立波(ISW)上形成的。构成海底地形的海底脊线为半圆形或三角形。在两层流体系统中,以具有不同高度的海底山脊和不同振幅的ISW的一系列组合进行测试。当顶层的厚度小于底层的厚度时(即H_1

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