Estimation of the gas hydrate saturation from multichannel seismic data on the western continental margin of the Chukchi Rise in the Arctic Ocean SCIE SCOPUS

Cited 3 time in WEB OF SCIENCE Cited 1 time in Scopus
Title
Estimation of the gas hydrate saturation from multichannel seismic data on the western continental margin of the Chukchi Rise in the Arctic Ocean
Author(s)
Choi, Yeonjin; Kang, Seung-Goo; Jin, Young Keun; Hong, Jong Kuk; Shin, Sung-Ryul; Kim, Sookwan; Choi, Youngil
KIOST Author(s)
Kim, Sookwan(김수관)
Alternative Author(s)
김수관
Publication Year
2022-10
Abstract
A multichannel seismic survey was conducted to investigate the geophysical characteristics of gas hydrates along the western continental margin of the Chukchi Rise around an ARAON mound cluster, which was first recovered in 2016. In the seismic data, gas hydrate-related bottom simulating reflection was widely distributed along the western continental margin of the Chukchi Rise. High-precision seismic P-wave velocity was obtained to investigate the geophysical characteristics of the gas hydrate structures in the BSR areas. Iterative migration velocity analysis was used to construct a detailed P-wave velocity model from the acquired seismic data. The gas hydrate and free gas layers have abnormally high- and low-seismic P-wave velocities; the precise velocity model allows us to understand the detailed spatial distribution of gas hydrate and free gas structures. The effective medium theory model enables estimations of the gas hydrate saturation from constructed seismic P-wave velocity model. We propose the P-wave velocity and gas hydrate saturation models from acquired multichannel seismic data in the western continental margin of the Chukchi Rise for the first time.
ISSN
2296-6463
URI
https://sciwatch.kiost.ac.kr/handle/2020.kiost/43282
DOI
10.3389/feart.2022.1025110
Bibliographic Citation
Frontiers in Earth Science, v.10, 2022
Publisher
Frontiers Media S.A.
Keywords
gas hydrates along the western continental margin of the chukchi rise in the arctic ocean; bottom simulating reflections (BSRs); seismic P-wave velocity model; iterative migration velocity analysis; estimation of gas hydrate saturation by the effective medium theory (EMT) model; characteristic of free gas-bearing sediment
Type
Article
Language
English
Document Type
Article
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