4.7 Article

Acoustic response of gas hydrate formation in sediments from South China Sea

Journal

MARINE AND PETROLEUM GEOLOGY
Volume 52, Issue -, Pages 1-8

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.marpetgeo.2014.01.007

Keywords

Gas hydrate; South China Sea (SCS); Acoustic response; Bender element; Time domain reflectometry (TDR)

Funding

  1. National Natural Sciences Foundation of China [41104086, 40576028]
  2. China Scholarship Council [201209370015]
  3. China Geological Survey's 100 Young Geoscientists Training Program
  4. Key Laboratory of Marine Hydrocarbon Resources and Environmental Geology, Ministry of Land and Resources [MRE201113]

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Gas hydrate has been recognized as a potential energy resource in South China Sea (SCS). Understanding the acoustic response of gas hydrate formation in the SCS sediments is essential for regional gas hydrate investigation and quantification. The sediments were obtained from gravity core sampling at E 115 degrees 12.52363' N 19 degrees 48.40299'. Gas hydrate was formed within a gas + water-saturated SCS sediments system. Combination of a new bender element technique and coated time domain reflectometry (TDR) was carried out to study the acoustic response of hydrate occurrence in SCS sediments. The results show the acoustic signal becomes weak when hydrate saturation (S-h) is lower than 14%. The acoustic velocities (Vp, Vs) of the sediments increase with S-h during hydrate formation, and Vs increases relatively faster when S-h is higher than 14%. These results indicate that tiny hydrate particles may firstly float in the pore fluid, which causes a significant acoustic attenuation, but has little influence on shear modulus. As time lapses and S-h approaches 14%, numerous particles coalesce together and contact with sediment particles. As a result, Vs has a sharp increase when hydrate saturation exceeds 14%. Several velocity models were validated with the experimental data, which suggests a combination of the BGTL (Biot-Gassmann Theory modified by Lee) model and the Weighted Equation is suitable to estimate S-h in SCS. (C) 2014 Elsevier Ltd. All rights reserved.

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