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Modeling of seafloor wave propagation and acoustic scattering in 3-D heterogeneous media

机译:3-D异质介质中海底波传播和声散射的建模

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Results from a 3-D finite difference code for the elastic wave equation are used to compare scattering from volume and surface heterogeneities at the seafloor. The 2-D and 3-D models for flat ocean crust containing volume heterogeneities, single facets, and statistically rough seafloors are compared. For both hard bottom (shear velocity greater than water velocity) and soft bottom (shear velocity less than water velocity) environments, heterogeneities scatter energy both forward and backward into the water column via three mechanisms: primary scattering from the direct compressional wave reflecting off the seafloor heterogeneities, secondary scattering from transmitted compressional and shear waves interacting with volume heterogeneities and from interface waves scattering from near surface heterogeneities, and tertiary scattering from interface waves spawning additional interface waves. There is significant secondary and tertiary scattering from rough, hard bottoms representative of basaltic seafloors. The results indicate that two-dimensional modeling techniques may be appropriate for modeling sub-bottom volume heterogeneities with velocity contrast less than 10% but may underestimate scattering from rough seafloors. It is also found that subsurface conversion to horizontally polarized shear waves is significant for both volume and surface heterogeneous crust in the three-dimensional model.
机译:来自弹性波方程的3-D有限差分代码的结果用于比较海底体积和表面非均质性引起的散射。比较了包含体积异质性,单面和统计粗糙海底的平坦洋壳的2-D和3-D模型。对于硬底(剪切速度大于水速)和软底(剪切速度小于水速)环境,非均质性均通过三种机制将能量向前和向后散射到水柱中:来自直接压缩波的一次散射,反射自水面。海底非均质性,来自传输的压缩波和剪切波与体积非均质性相互作用以及来自近地表非均质性的界面波的二次散射以及来自界面波的三次散射产生了额外的界面波。代表玄武质海底的粗糙,坚硬的底部有大量的二次和三次散射。结果表明,二维建模技术可能适合于模拟速度差小于10%的亚底部体积异质性,但可能会低估来自粗糙海底的散射。还发现在三维模型中,地下体积转换为水平极化剪切波对于体积和表面非均质地壳均具有重要意义。

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