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非均匀非互易介质的统一波场反演与成像方法

Unified wave field retrieval and imaging method for inhomogeneous non-reciprocal media.

作者信息

Wapenaar Kees, Reinicke Christian

机构信息

Department of Geoscience and Engineering, Delft University of Technology, Stevinweg 1, 2628 CN Delft, The Netherlands.

出版信息

J Acoust Soc Am. 2019 Jul;146(1):810. doi: 10.1121/1.5114912.

Abstract

Acoustic imaging methods often ignore multiple scattering. This leads to false images in cases where multiple scattering is strong. Marchenko imaging has recently been introduced as a data-driven way to deal with internal multiple scattering. Given the increasing interest in non-reciprocal materials, both for acoustic and electromagnetic applications, a modification to the Marchenko method is proposed for imaging such materials. A unified wave equation is formulated for non-reciprocal materials, exploiting the similarity between acoustic and electromagnetic wave phenomena. This unified wave equation forms the basis for deriving reciprocity theorems that interrelate wave fields in a non-reciprocal medium and its complementary version. Next, these theorems are reformulated for downgoing and upgoing wave fields. From these decomposed reciprocity theorems, representations of the Green's function inside the non-reciprocal medium are derived in terms of the reflection response at the surface and focusing functions inside the medium and its complementary version. These representations form the basis for deriving a modified version of the Marchenko method to retrieve the wave field inside a non-reciprocal medium and to form an image, free from artefacts related to multiple scattering. The proposed method is illustrated at the hand of the numerically modeled reflection response of a horizontally layered medium.

摘要

声学成像方法通常忽略多次散射。这会在多次散射较强的情况下导致虚假图像。马尔琴科成像最近被引入作为一种处理内部多次散射的数据驱动方法。鉴于对声学和电磁应用中的非互易材料的兴趣日益增加,本文提出了对马尔琴科方法的一种修改,用于对此类材料进行成像。利用声学和电磁波现象之间的相似性,为非互易材料建立了一个统一的波动方程。这个统一的波动方程构成了推导互易定理的基础,这些定理将非互易介质及其互补介质中的波场相互关联起来。接下来,针对下行波场和上行波场对这些定理进行重新表述。从这些分解后的互易定理出发,根据表面的反射响应以及介质及其互补介质内部的聚焦函数,推导出非互易介质内部格林函数的表示形式。这些表示形式构成了推导马尔琴科方法的修改版本的基础,以恢复非互易介质内部的波场并形成一幅不受多次散射相关伪影影响的图像。通过水平分层介质的数值模拟反射响应说明了所提出的方法。

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