{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2026,4,28]],"date-time":"2026-04-28T11:21:49Z","timestamp":1777375309664,"version":"3.51.4"},"reference-count":57,"publisher":"Society of Exploration Geophysicists","issue":"6","funder":[{"name":"National Natural Science Foundation of China grant agreement","award":["42374149"],"award-info":[{"award-number":["42374149"]}]},{"name":"National Natural Science Foundation of China grant agreement","award":["42374149"],"award-info":[{"award-number":["42374149"]}]}],"content-domain":{"domain":["library.seg.org"],"crossmark-restriction":true},"short-container-title":[],"published-print":{"date-parts":[[2024,1,11]]},"abstract":"<jats:title>ABSTRACT<\/jats:title>\n                  <jats:p>Understanding wave scattering in the earth is considered fundamental in describing seismic wave propagation and providing information on structural features of the earth\u2019s interior. Petrophysical parameters (especially porosity and permeability) affect the reflection coefficients of subsurface interfaces, which can better explain the field data and infer the subsurface structure. However, the numerical solutions to the scattering problem for efficient modeling of wave propagation in poroelastic earth structures have limitations. We develop a numerical algorithm for solving the poroelastic scattering integral equations. Specifically, applying perturbation theory to Biot\u2019s equations, the solutions are expressed by the Lippman-Schwinger integral equations, which can express the displacement and pressure fields. We derive the contrast-source integral equations of the decoupled poroelastic wave equations. We apply a conjugate-gradient fast Fourier transform method for fast solutions of the integral equations. We show that despite the complexity of the geologic structure, the numerical method enables the modeling of the displacement and pressure fields in the frequency and time domains. We determine that the wave scattering problem for the Biot model provides a good description to understand the earth\u2019s interior.<\/jats:p>","DOI":"10.1190\/geo2023-0616.1","type":"journal-article","created":{"date-parts":[[2024,7,26]],"date-time":"2024-07-26T12:24:54Z","timestamp":1721996694000},"page":"T303-T317","update-policy":"https:\/\/doi.org\/10.1190\/crossmark-policy","source":"Crossref","is-referenced-by-count":13,"title":["Modeling of seismic wave scattering in poroelastic media"],"prefix":"10.1190","volume":"89","author":[{"ORCID":"https:\/\/orcid.org\/0000-0001-9719-6297","authenticated-orcid":false,"given":"Xingguo","family":"Huang","sequence":"first","affiliation":[{"name":"Jilin University 1 , College of Instrumentation and Electrical Engineering, Changchun, China. xingguohuang@jlu.edu.cn (corresponding author)"}],"role":[{"role":"author","vocabulary":"crossref"}]},{"ORCID":"https:\/\/orcid.org\/0009-0003-5032-9242","authenticated-orcid":false,"given":"Tong","family":"Sun","sequence":"additional","affiliation":[{"name":"Jilin University 1 , College of Instrumentation and Electrical Engineering, Changchun, China. suntong22@mais.jlu.edu.cn"}],"role":[{"role":"author","vocabulary":"crossref"}]},{"ORCID":"https:\/\/orcid.org\/0000-0002-0028-2779","authenticated-orcid":false,"given":"Stewart","family":"Greenhalgh","sequence":"additional","affiliation":[{"name":"Swiss Federal Institute of Technology (ETH) Zurich 2 , Institute of Geophysics, Department of Earth Sciences, Zurich, Switzerland. gstewart@retired.ethz.ch"}],"role":[{"role":"author","vocabulary":"crossref"}]}],"member":"186","published-online":{"date-parts":[[2024,10,3]]},"reference":[{"key":"2025121212373552900_r1","doi-asserted-by":"crossref","first-page":"179","DOI":"10.1121\/1.1908241","article-title":"Theory of propagation of elastic waves in a fluid-saturated porous solid. 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W.\n            \n          , 2002, The stabilized biconjugate gradient fast Fourier transform method for electromagnetic scattering: IEEE Antennas and Propagation Society International Symposium, 614\u2013617."},{"key":"2025121212373552900_r53","doi-asserted-by":"crossref","first-page":"143s","DOI":"10.2208\/jsceseee.21.143s","article-title":"A numerical method for wave scattering in poroelastic media","volume":"21","author":"Yamamoto","year":"2004","journal-title":"Structural Engineering\/Earthquake Engineering"},{"key":"2025121212373552900_r54","doi-asserted-by":"crossref","first-page":"68","DOI":"10.1093\/gji\/ggaa579","article-title":"Frequency domain full-waveform inversion in a fluid-saturated poroelastic medium","volume":"225","author":"Yang","year":"2021","journal-title":"Geophysical Journal International","ISSN":"https:\/\/id.crossref.org\/issn\/0956-540X","issn-type":"print"},{"key":"2025121212373552900_r55","doi-asserted-by":"crossref","first-page":"1919","DOI":"10.1093\/gji\/ggy525","article-title":"Analysis of radiation patterns for optimized full waveform inversion in fluid-saturated porous media","volume":"216","author":"Yang","year":"2019","journal-title":"Geophysical Journal International","ISSN":"https:\/\/id.crossref.org\/issn\/0956-540X","issn-type":"print"},{"key":"2025121212373552900_r56","doi-asserted-by":"crossref","first-page":"148","DOI":"10.1093\/gji\/ggw380","article-title":"Simulation of seismic wave propagation in 2-D poroelastic media using weighted-averaging finite difference stencils in the frequency-space domain","volume":"208","author":"Yang","year":"2017","journal-title":"Geophysical Journal International","ISSN":"https:\/\/id.crossref.org\/issn\/0956-540X","issn-type":"print"},{"issue":"1","key":"2025121212373552900_r57","doi-asserted-by":"crossref","first-page":"D45","DOI":"10.1190\/geo2015-0211.1","article-title":"Ultrasonic velocity and attenuation anisotropy of shales, Whitby, United Kingdom","volume":"81","author":"Zhubayev","year":"2016","journal-title":"Geophysics","ISSN":"https:\/\/id.crossref.org\/issn\/0016-8033","issn-type":"print"}],"container-title":["Geophysics"],"original-title":[],"language":"en","link":[{"URL":"https:\/\/pubs.geoscienceworld.org\/seg\/geophysics\/article-pdf\/89\/6\/T303\/7071265\/geo-2023-0616.1.pdf","content-type":"application\/pdf","content-version":"vor","intended-application":"syndication"},{"URL":"https:\/\/pubs.geoscienceworld.org\/seg\/geophysics\/article-pdf\/89\/6\/T303\/7071265\/geo-2023-0616.1.pdf","content-type":"unspecified","content-version":"vor","intended-application":"similarity-checking"}],"deposited":{"date-parts":[[2025,12,12]],"date-time":"2025-12-12T17:37:47Z","timestamp":1765561067000},"score":1,"resource":{"primary":{"URL":"https:\/\/pubs.geoscienceworld.org\/geophysics\/article\/89\/6\/T303\/649018\/Modeling-of-seismic-wave-scattering-in-poroelastic"},"secondary":[{"URL":"https:\/\/pubs.geoscienceworld.org\/geophysics\/article\/89\/6\/t303\/649018\/modeling-of-seismic-wave-scattering-in-poroelastic","label":"geoscienceworld"}]},"subtitle":[],"short-title":[],"issued":{"date-parts":[[2024,1,11]]},"references-count":57,"journal-issue":{"issue":"6","published-print":{"date-parts":[[2024,1,11]]}},"URL":"https:\/\/doi.org\/10.1190\/geo2023-0616.1","relation":{},"ISSN":["0016-8033","1942-2156"],"issn-type":[{"value":"0016-8033","type":"print"},{"value":"1942-2156","type":"electronic"}],"subject":[],"published":{"date-parts":[[2024,1,11]]},"assertion":[{"value":"2023-10-15","order":0,"name":"received","label":"Received","group":{"name":"publication_history","label":"Publication History"}},{"value":"2024-07-08","order":1,"name":"revised","label":"Revised","group":{"name":"publication_history","label":"Publication History"}},{"value":"2024-07-10","order":2,"name":"accepted","label":"Accepted","group":{"name":"publication_history","label":"Publication History"}},{"value":"2024-10-03","order":3,"name":"published","label":"Published","group":{"name":"publication_history","label":"Publication History"}}]}}