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Article

Semi-Analytical Analysis of Depletion-Induced Geomechanical Behaviors in Deepwater Shallow Gas-Bearing Sediments

1
CNOOC Research Institute Ltd., Beijing 100028, China
2
College of Petroleum Engineering, China University of Petroleum (Beijing), Beijing 102249, China
*
Author to whom correspondence should be addressed.
J. Mar. Sci. Eng. 2026, 14(10), 937; https://doi.org/10.3390/jmse14100937 (registering DOI)
Submission received: 1 April 2026 / Revised: 28 April 2026 / Accepted: 12 May 2026 / Published: 18 May 2026
(This article belongs to the Section Geological Oceanography)

Abstract

Deepwater shallow gas sediments and the weakly consolidated overburden are sensitive to depletion-induced effective stress redistribution. Since deepwater shallow gas has only recently begun to be treated as a commercially available natural gas resource, it lacks models to quantify the coupled flow and geomechanical behaviors in such environments. In this study, we propose a semi-analytical model for a shallow gas layer and its overburden sediments, where pore pressure evolution is described by vertical transient diffusion and the stress response is represented by an OCR-dependent (overconsolidation ratio-dependent) in situ stress field with depletion-induced effective stress increments. Pre-yield compressibility is characterized by a stress-dependent nonlinear elastic law, and post-yield deformation is approximated by a Mohr–Coulomb-based yield-controlled plastic correction for engineering purposes. The formulation is used in the base case and during a parametric sensitivity analysis. In the base case, the final settlement is 0.597 m, of which 45.3% is elastic and 54.7% is plastic. The sediments begin to yield after approximately 115 d of production, and the final yielded-thickness fraction reaches 0.268. The sensitivity analysis shows that friction angle, maximum drawdown, gas-layer thickness, and OCR magnitudes predominantly affect the final settlement and yielded-thickness response, while gas-layer permeability has an insignificant effect. Furthermore, the comparison reveals that the depletion timescale governs the stress evolution rate, while depletion pressure drawdown magnitude dictates deviatoric stress evolution and long-term settlement. Considering the engineering condition for the development of typical deepwater shallow sediments, the feasible production parameters should be in the low-to-moderate drawdown and slow depletion range. A practical operating window is approximately 3.6~4.0 MPa maximum drawdown with a depletion timescale of about 340~400 d. This study can provide quantitative insights into the potential commercial production of gas layers in deepwater shallow sediments.
Keywords: deepwater shallow gas; shallow sediments; semi-analytical model; Mohr-Coulomb criterion; seabed settlement deepwater shallow gas; shallow sediments; semi-analytical model; Mohr-Coulomb criterion; seabed settlement

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MDPI and ACS Style

Tong, G.; Lu, Y.; Yin, Z.; Guo, X.; Xu, G.; Shen, S. Semi-Analytical Analysis of Depletion-Induced Geomechanical Behaviors in Deepwater Shallow Gas-Bearing Sediments. J. Mar. Sci. Eng. 2026, 14, 937. https://doi.org/10.3390/jmse14100937

AMA Style

Tong G, Lu Y, Yin Z, Guo X, Xu G, Shen S. Semi-Analytical Analysis of Depletion-Induced Geomechanical Behaviors in Deepwater Shallow Gas-Bearing Sediments. Journal of Marine Science and Engineering. 2026; 14(10):937. https://doi.org/10.3390/jmse14100937

Chicago/Turabian Style

Tong, Gang, Yunhu Lu, Zhiming Yin, Xuyang Guo, Guoxian Xu, and Shijie Shen. 2026. "Semi-Analytical Analysis of Depletion-Induced Geomechanical Behaviors in Deepwater Shallow Gas-Bearing Sediments" Journal of Marine Science and Engineering 14, no. 10: 937. https://doi.org/10.3390/jmse14100937

APA Style

Tong, G., Lu, Y., Yin, Z., Guo, X., Xu, G., & Shen, S. (2026). Semi-Analytical Analysis of Depletion-Induced Geomechanical Behaviors in Deepwater Shallow Gas-Bearing Sediments. Journal of Marine Science and Engineering, 14(10), 937. https://doi.org/10.3390/jmse14100937

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