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Author:

Zhang, X. L. (Zhang, X. L..) | Xu, C. S. (Xu, C. S..) (Scholars:许成顺) | Han, Y. (Han, Y..)

Indexed by:

EI Scopus SCIE

Abstract:

The evaluation of the wave-induced excess pore pressure around a buried pipeline is particularly important for pipeline engineers involved in the design of offshore pipelines. Existing models for the wave-induced seabed response around submarine pipeline have been limited to poro-elastic soil behavior and de-coupled oscillatory and residual mechanisms for the rise in excess pore water pressure. To overcome the shortcoming of the existing models, in this study a three-dimensional poro-elasto-plastic soil model with submarine pipeline is established, in which both oscillatory and residual mechanisms can be simulated simultaneously. With the proposed model, a parametric study is conducted to investigate the relative differences of the predictions of the wave-induced pore pressure with poro-elasto-plastic model. Based on numerical examples, it can be concluded that the poro-elasto-plastic behaviors of soil have more significant influence on wave-induced pore pressure of seabed around submarine pipeline. As the seabed depth increases, the normalized pore pressures decrease rapidly at the upper part of seabed, and then change slightly at the lower part of the seabed. Soil permeability and wave period have obvious influence on the wave-induced normalized pore pressure. (C) 2014 Elsevier Ltd. All rights reserved.

Keyword:

Three-dimensional model Poro-elasto-plastic Submarine pipeline Seabed response

Author Community:

  • [ 1 ] [Zhang, X. L.]Beijing Univ Technol, Key Lab Urban Secur & Disaster Engn, Minisby Educ, Beijing 100124, Peoples R China
  • [ 2 ] [Xu, C. S.]Beijing Univ Technol, Key Lab Urban Secur & Disaster Engn, Minisby Educ, Beijing 100124, Peoples R China
  • [ 3 ] [Han, Y.]Chinese Acad Sci, Inst Geog Sci & Nat Resources Res, Beijing 100101, Peoples R China

Reprint Author's Address:

  • [Zhang, X. L.]Beijing Univ Technol, Key Lab Urban Secur & Disaster Engn, Minisby Educ, Beijing 100124, Peoples R China

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Source :

SOIL DYNAMICS AND EARTHQUAKE ENGINEERING

ISSN: 0267-7261

Year: 2015

Volume: 69

Page: 163-171

4 . 0 0 0

JCR@2022

ESI Discipline: ENGINEERING;

ESI HC Threshold:174

JCR Journal Grade:2

CAS Journal Grade:3

Cited Count:

WoS CC Cited Count: 16

SCOPUS Cited Count: 18

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 3

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