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Seabed rough surface scattering described by 2-way coupled mode approach

机译:通过双向耦合模式方法描述的海底粗糙表面散射

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A 2-way integral equation coupled mode (IECM) approach is used to examine the physics of scattering from a rough seabed. Roughness realizations for the seabed are generated from a wavenumber power spectrum whose parameterization includes a roll-off wavenumber K_L and a root mean square (rms) roughness height h. For the waveguide, source depth, frequency, and seabed type examined, large losses can occur due to scattering of low angle modes into the modal continuum. This occurs for small K_L and large h values. However, for large K_L and small h energy lost from the trapped modes to the continuum and backscattering can be less than the energy saved by a transfer of energy within the trapped spectrum to the lower order modes with smaller attenuation. The study suggests a critically important relationship between the modal interference distances and 1/K_L (a correlation distance) in the physics of multimodal scattering from a rough seabed in shallow water.
机译:一种双向整数方程耦合模式(IECM)方法用于检查粗糙海底散射的物理学。从波数功率谱产生海底的粗糙度实现,其参数化包括滚动波数k_1和均方根(rms)粗糙度高度h。对于波导,源深度,频率和海底类型检查,由于低角度模式散射到模态连续体中可能发生大的损失。这是出现的小K_L和大H值。然而,对于从捕获的模式丢失的大K_L和小的H能量到连续体和反向散射可以小于通过捕获光谱内的能量传递到较小衰减的较低顺序模式而节省的能量。该研究表明,从浅水粗糙海底的多模式散射物理学中的模态干扰距离和1 / K_1(相关距离)之间的批判性重要关系。

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