Upside down Rayleigh-Marchenko: a practical, yet exact redatuming scheme for seabed seismic acquisitions

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Wang, Ning, Ravasi, Matteo
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911755325669376
author Wang, Ning
Ravasi, Matteo
author_facet Wang, Ning
Ravasi, Matteo
contents Ocean-bottom seismic plays a crucial role in resource exploration and monitoring. However, despite its undoubted potential, the use of coarse receiver geometries poses challenges to accurate wavefield redatuming. This in turn, affects the quality of subsequent imaging and reservoir charactherization products. We propose a reciprocal version of the Rayleigh-Marchenko method, called upside down Rayleigh-Marchenko, where all spatial integrals are performed over the (usually much better-sampled) source carpet; this results in a theoretically exact redatuming scheme, which can handle irregular and sparse receiver geometries. The proposed method requires availability of multi-component receivers and either dual-sensor sources or a pre-processing step of model-based source deghosting, and utilizes only the down-going component of the receiver-side wavefield; as such, it can be interpreted as a full-wavefield extension of the mirror imaging method commonly used in seabed settings. Two synthetic examples are used to showcase the effectiveness of the proposed method, starting from the ideal scenario of finely and regularly sampled sources and receivers, and later considering different levels of decimation for the receiver array. Migrated images as well as common-angle gathers reveal that our method can be used to produce structural and amplitude-friendly imaging outputs with minimal data pre-processing.
format Preprint
id arxiv_https___arxiv_org_abs_2401_05944
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Upside down Rayleigh-Marchenko: a practical, yet exact redatuming scheme for seabed seismic acquisitions
Wang, Ning
Ravasi, Matteo
Geophysics
Ocean-bottom seismic plays a crucial role in resource exploration and monitoring. However, despite its undoubted potential, the use of coarse receiver geometries poses challenges to accurate wavefield redatuming. This in turn, affects the quality of subsequent imaging and reservoir charactherization products. We propose a reciprocal version of the Rayleigh-Marchenko method, called upside down Rayleigh-Marchenko, where all spatial integrals are performed over the (usually much better-sampled) source carpet; this results in a theoretically exact redatuming scheme, which can handle irregular and sparse receiver geometries. The proposed method requires availability of multi-component receivers and either dual-sensor sources or a pre-processing step of model-based source deghosting, and utilizes only the down-going component of the receiver-side wavefield; as such, it can be interpreted as a full-wavefield extension of the mirror imaging method commonly used in seabed settings. Two synthetic examples are used to showcase the effectiveness of the proposed method, starting from the ideal scenario of finely and regularly sampled sources and receivers, and later considering different levels of decimation for the receiver array. Migrated images as well as common-angle gathers reveal that our method can be used to produce structural and amplitude-friendly imaging outputs with minimal data pre-processing.
title Upside down Rayleigh-Marchenko: a practical, yet exact redatuming scheme for seabed seismic acquisitions
topic Geophysics
url https://arxiv.org/abs/2401.05944