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Incomplete boundaries and partial equations in source-receiver interferometry (SRI)

机译:源 - 接收器干涉测量中的不完全边界和部分方程(SRI)

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Source-receiver interferometry (SRI) refers to a technique to construct the Green's function between a source and a receiver using only energy that has travelled from and to surrounding boundaries of sources and receivers. When the full boundary requirements for seismic interferometry are violated, spurious or non-physical energy is introduced into Green's function estimates. Using an acoustic model of a homogeneous medium embedding a single scatterer, we analyse the properties of the interferometric estimate for the case of a partial boundary located on one side of our model, as is commonly the case in practical experiments. We find, that it can be favourable, rather than a shortcoming, to use incomplete boundaries in order to preserve the information from non-physical arrivals that help to constrain the location of a scattering perturbation. Moreover, we show that one term of the SRI equation for scattering media is associated with standard imaging (migration) methods, and that for this term using a partial boundary is an advantage since this suppresses non-physical energy that might otherwise distort the image.
机译:源 - 接收器干涉(SRI)是指一种技术构建的源极,并且仅使用已经从与周围的源和接收器的边界行进能量接收器之间的格林函数。当侵犯地震干涉测量学的全边界要求时,将杂散或非物理能量引入绿色的功能估计。使用嵌入单个散射体的均匀介质的声学模型,我们分析了位于我们模型一侧的部分边界的干涉式估计的性质,如实际实验中的常见情况。我们发现,它可以有利,而不是缺点,使用不完整的边界,以保护来自非物理到来的信息,有助于限制散射扰动的位置。此外,我们示出了用于散射介质的SRI方程的一个术语与标准成像(迁移)方法相关联,并且使用部分边界的该术语是一个优点,因为这抑制了可能否则扭曲图像的非物理能量。

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