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A study of monomolecular slicks' damping effect on Doppler spectrum from one-dimensional time-varying rough sea surfaces

机译:一维时变粗糙海面单分子浮油对多普勒谱的阻尼作用研究

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The modeling of time-varying nonlinear sea surfaces damped by monomolecular sea slicks is presented in the present study by combining Lombardini et al. model that can predict the hydrodynamic damping of rough sea surfaces in the presence of monomolecular sea slicks and “choppy wave model” (CWM) that can describing the nonlinear interactions between ocean waves. On this basis, the influence of sea slick's damping on Doppler spectra of backscattered echoes from contaminated “choppy wave model” (CWM) nonlinear sea surfaces is investigated by comparison with the Doppler spectra of clean sea surfaces. Numerical simulations show a narrowing of the Doppler spectra of contaminated sea surfaces compared with those of clean sea. In addition, it is also indicated that the Doppler shifts in slicks can decrease or increase, depending on incidence angles.
机译:结合Lombardini等人的研究,提出了由单分子浮油阻尼的时变非线性海面建模。可以预测存在单分子浮油时粗糙海面的流体动力阻尼的模型和可以描述海浪之间非线性相互作用的“波动波模型”(CWM)。在此基础上,通过与清洁海面多普勒谱进行比较,研究了浮油阻尼对受污染的“波涛模型”(CWM)非线性海面后向散射回波的多普勒谱的影响。数值模拟表明,与干净海面相比,受污染海面的多普勒光谱范围变窄。另外,还表明,取决于入射角,浮油中的多普勒频移可以减小或增大。

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