Soil-Structure Interaction of Heated Pipeline Buried in Soft Clay

Author:

da Costa Alvaro Maia1,de Oliveira Cardoso Carlos2,dos Santos Amaral Claudio1,Andueza Alejandro3

Affiliation:

1. Petrobras, Rio de Janeiro, RJ, Brazil

2. COPPE/UFRJ, Rio de Janeiro, RJ, Brazil

3. SERCON Consulting Services

Abstract

Heated pipelines buried in soft clay can develop a very challenging behavior. The thermal expansion of the pipelines normally induces buckles, which will be supported by the passive soil reaction. The buckles of the pipelines in soft clay can generate a non-linear inelastic behavior that is an unstable situation named “snap through”. In such situation the pipeline can jump from a configuration of a few centimeters displacement to another of meters displacement. Once the snap through situation has developed, there is the possibility of a local pipeline buckling, causing the pipeline rupture and as a consequence an oil spill. This paper presents the results obtained during the analysis of the rupture of a buried heated pipeline in the Guanabara Bay of Rio de Janeiro, Brazil. A very sophisticated procedure including a simulation of the thermal mechanical interactions between the soil and the pipeline structure was developed for back analysis of the thermal inelastic pipeline buckling. Computer modeling was carried out using the finite element method considering of the non-linear material behavior of the soil and pipeline, and nonlinear geometrical behavior of the pipeline. A cyclic thermal-mechanical soil-pipeline structure interaction model was the challenging aspect of the simulation, that explains the trigger mechanism of the snap through behavior of heated pipelines, which was responsible for the rupture of the pipeline in Guanabara Bay.

Publisher

ASMEDC

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Buckling and stability of subsea HP/HT pipelines on laterally sloping seabeds;Journal of Ocean Engineering and Marine Energy;2022-08-03

2. Finite-Element Modeling of Offshore Pipeline Lateral Buckling;Journal of Pipeline Systems Engineering and Practice;2019-11

3. Coupled consolidation and heat flow analysis of layered soils surrounding cylindrical heat sources using a precise integration technique;International Journal for Numerical and Analytical Methods in Geomechanics;2019-03-04

4. Effect of Tension on the Combined Loading Failure Envelope of a Pipeline on Soft Clay Seabed;International Journal of Geomechanics;2018-10

5. A New Shape of Snaked-Lay Pipeline;Advanced Materials Research;2011-05

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