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A study of SAR remote sensing of internal solitary waves in the north of the South China Sea:I.Simulation of internal tide transformation

机译:南海北部内孤立孤波的SAR遥感研究:I。内潮转换模拟

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摘要

For settlement of the well-known problem of contemporary radar imaging models,i.e.,the pmblem of a general underestimation of radar signatures of hydrodynamic features over oceanic internal waves and underwater bottom topography in tidal watels at at high radar frequency bands(X-band and C-band),the impact of the ocean surface mixed layer turbulence and the significance of strat-ified oceanic model on SAR remote sensing of internal solitary waves are proposed.In the north of the South China Sea by utilizing seme observed data of background field the nonlinearity coefficient,the dispersion coefficient,the horizontal variability coefficient and the phase speed in the generalized K-dV equation are determined approximately.Through simulations of internal tide transfor-mation the temporal evolution and spatial distribution of the vertical displacement and horizontal velocity of intereal wave field are obtained.The simulation results indicate that the maximum amplitudes of internal solitary waves occur at depth 35 m,but the maximum current speeds take place at depth 20 m in this area of the sea(about 20°30'N,114°E)in August.It was noticed that considering the effects of flood current and ebb current respectively is appropriate to investigate influence of the background shear flow on coefficients of the K-dV equation.The obtained results provide the possibility for the simulation of SAR signatures of inter-nal solitary waves under considering the impact of ocean surface mixed layer turbulence in the companion paper.
机译:为了解决当代雷达成像模型的一个众所周知的问题,即,在高雷达频段(X波段和X波段)上,潮汐中水动力特征对海洋内波和水下底部地形的水动力特征的雷达特征普遍存在低估的问题。 C波段),提出了海面混合层湍流的影响以及分层海洋模型对内部孤立波SAR遥感的意义。在南海北部,利用背景场的塞姆观测数据近似确定了广义K-dV方程中的非线性系数,弥散系数,水平变异系数和相速度。通过内部潮汐变形的模拟,层间垂直位移和水平速度的时间演化和空间分布仿真结果表明,内孤波的最大振幅为零。波浪在35 m处发生,但最大流速在8月在该海域(约20°30'N,114°E)发生在20 m处。潮汐电流分别适合于研究背景切变流对K-dV方程系数的影响。所得结果为考虑海洋表面混合层湍流的影响为模拟孤立孤波的SAR信号提供了可能性在随行文件中。

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