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Article

Numerical Modeling of Nonlinear Response of Seafloor Porous Saturated Soil Deposits to SH-Wave Propagation

by
Artem A. Krylov
1,2,*,
Dmitry A. Alekseev
1,2,
Sergey A. Kovachev
1,
Elena A. Radiuk
1 and
Mikhail A. Novikov
1,2
1
Shirshov Institute of Oceanology, Russian Academy of Sciences, Nahimovskiy prospekt 36, 117997 Moscow, Russia
2
Moscow Institute of Physics and Technology, Institutsky lane 9, Dolgoprudny, 141700 Moscow, Russia
*
Author to whom correspondence should be addressed.
Appl. Sci. 2021, 11(4), 1854; https://doi.org/10.3390/app11041854
Submission received: 22 December 2020 / Revised: 10 February 2021 / Accepted: 16 February 2021 / Published: 19 February 2021
(This article belongs to the Special Issue Seismic Geotechnical Hazards Studies)

Abstract

Numerical modeling of seismic response of soil deposits is usually conducted as part of seismic hazard assessment, preceding facility construction in any tectonically active regions, including offshore sites. A significant feature of subsea soils is their porous and water-saturated structure. Thus, the purpose of the present study is to introduce a procedure for modeling nonlinear behavior of porous, moist soils during SH-wave propagation, to verify it and compare response for synthetic soil profiles with porous medium parameters specific for low moisture onshore and high moisture offshore sites with cohesive and non-cohesive soils. The well-known and approved NERA code was used as a basis and improved to incorporate the Biot and Gassman equations for elastic waves propagation in a fluid-saturated porous solid. The applicability of the presented approach was substantiated for integration into other well-known algorithms. Obtained results showed good agreement between the simulated by different methods and observed spectra. The modeling also showed that the response of cohesive and non-cohesive soils with moisture specific both for onshore and offshore sites is explained by effects of resonances and effect of seismic amplitude saturation, which, in turn, depend on the corresponding value of the layer thickness and S-wave impedance for porous saturated soil layer. The proposed scheme could have significant practical usage for studying the effect of porous medium parameters on the seismic response of the moist soil deposits.
Keywords: seismic hazard; site-specific analysis; numerical modeling; nonlinear earthquake response; porous saturated medium; seafloor soils; SH-waves seismic hazard; site-specific analysis; numerical modeling; nonlinear earthquake response; porous saturated medium; seafloor soils; SH-waves

Share and Cite

MDPI and ACS Style

Krylov, A.A.; Alekseev, D.A.; Kovachev, S.A.; Radiuk, E.A.; Novikov, M.A. Numerical Modeling of Nonlinear Response of Seafloor Porous Saturated Soil Deposits to SH-Wave Propagation. Appl. Sci. 2021, 11, 1854. https://doi.org/10.3390/app11041854

AMA Style

Krylov AA, Alekseev DA, Kovachev SA, Radiuk EA, Novikov MA. Numerical Modeling of Nonlinear Response of Seafloor Porous Saturated Soil Deposits to SH-Wave Propagation. Applied Sciences. 2021; 11(4):1854. https://doi.org/10.3390/app11041854

Chicago/Turabian Style

Krylov, Artem A., Dmitry A. Alekseev, Sergey A. Kovachev, Elena A. Radiuk, and Mikhail A. Novikov. 2021. "Numerical Modeling of Nonlinear Response of Seafloor Porous Saturated Soil Deposits to SH-Wave Propagation" Applied Sciences 11, no. 4: 1854. https://doi.org/10.3390/app11041854

APA Style

Krylov, A. A., Alekseev, D. A., Kovachev, S. A., Radiuk, E. A., & Novikov, M. A. (2021). Numerical Modeling of Nonlinear Response of Seafloor Porous Saturated Soil Deposits to SH-Wave Propagation. Applied Sciences, 11(4), 1854. https://doi.org/10.3390/app11041854

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