Numerical Modeling of Buried HDPE Pipelines Subjected to Normal Faulting: A Case Study

Author:

Xie Xiaojian1,Symans Michael D.2,O'Rourke Michael J.2,Abdoun Tarek H.2,O'Rourke Thomas D.3,Palmer Michael C.3,Stewart Harry E.3

Affiliation:

1. Offshore Structural Engineer, American Bureau of Shipping, Houston, TX 77060

2. Dept. of Civil and Environmental Engineering, Rensselaer Polytechnic Institute, Troy, NY 12180

3. School of Civil and Environmental Engineering, Cornell University, Ithaca, NY 14853

Abstract

A systematic study is presented herein on the seismic response of buried pipelines subjected to ground fault rupture in the form of normal faulting. In this study, advanced computational simulations are conducted in parallel with physical testing using a geotechnical centrifuge. For the numerical simulations, the pipeline was modeled using isotropic 3-D shell elements and the soil was modeled using either 1-D spring elements or 3-D solid (continuum) elements. The results from continuum finite-element analyses are compared with those from a Winkler-type model (in which the pipe is supported by a series of discrete springs) and with results from centrifuge tests. In addition, via appropriate modeling of the soil-pipe interaction, the q-z relation of the soil medium is elucidated for normal faulting events. The numerical analysis results demonstrate the potential for continuum modeling of events that induce pipe-soil interaction and results in improved understanding of pipe-soil interaction under normal faulting.

Publisher

SAGE Publications

Subject

Geophysics,Geotechnical Engineering and Engineering Geology

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