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- W2053304801 abstract "[1] Internal solitary waves referred to as solitons are common occurrences in the South China Sea. The Asian Seas International Acoustics Experiment (ASIAEX) experiment was carried out in April-May 2001 to perform measurements on these solitons, which are often highly energetic, having isopycnal displacements well over 100 m and phase speeds greater than 2.5 m/s. Of particular interest is the interaction of a soliton with the sloping shelf bottom that occurs as the soliton shoals to water depths less than its wave height. Observations during the experiment show that at such shallow depths, a soliton undergoes strong refraction and transformation. In this article, we present hindcast simulation of a particular soliton observed during the experiment, using a fully nonlinear, nonhydrostatic, three-dimensional model and the actual bathymetry from the ASIAEX area. The computation begins with the soliton at a distance about 100 km from the shelf and obtains the propagation and evolution of the soliton over the shelf-slope. The three-dimensional hindcast is able to reproduce the refraction of the soliton propagation observed during the experiment as well as the propagation speed and direction in the range observed. The final nonlinear transformation of the soliton from symmetrical to skewed elongated waveform is also obtained in the model consistent with the observations. The hindcast simulation reveals that the relative position of soliton's vorticity core to the local water depth is a crucial indicator of the onset of transformation and formation of elevation waves." @default.
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- W2053304801 date "2009-01-29" @default.
- W2053304801 modified "2023-09-23" @default.
- W2053304801 title "Three-dimensional hindcast simulation of internal soliton propagation in the Asian Seas International Acoustics Experiment area" @default.
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- W2053304801 doi "https://doi.org/10.1029/2008jc004937" @default.
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