Assessment of pipeline stability in the Gulf of Mexico during hurricanes using dynamic analysis
Tài liệu tham khảo
Salvador, 1991, The Gulf of Mexico basin, 131
Gore, 1992
Nowlin, 1971, Water masses and general circulation of the Gulf of Mexico, Oceanology, 5, 28
Det Norske Veritas, Pipeline damage assessment from hurricanes Katrina and Rita in the Gulf of Mexico, Technical Report no. 44814183, Houston, Texas, 2007.
M. Gagliano, Offshore pipeline stability during major storm events, in: Government/Industry Pipeline Research and Development Forum, New Orleans, LA, 2007.
J. Thomson, M. Garrett, M. Taylor, T. George, M. Melancon, K. Behrens, Sonar surveys for pipeline inspection show extent of pipeline displacement and seafloor instability following hurricane Ivan, in: Offshore Technology Conference, Houston, Texas, 2005.
Det Norske Veritas, Pipeline damage assessment from hurricane Ivan in the Gulf of Mexico, Technical Report no. 44038570, Houston, Texas, 2006.
A.T. Cox, V.J. Cardone, F. Counillon, D. Szabo, Hindcast study of winds, waves, and currents in Northern Gulf of Mexico in hurricane Ivan (2004), in: Offshore Technology Conference, Houston, Texas, 2005.
E.G. Ward, R. Gilbert, R. Spong, 2005 Hurricane Readiness and Recovery Conference: Final Conference Summary Report, Report no. 10/05C155, Offshore Technology Research Center, Austin, Texas, 2005.
S. Mirza, J. Skinner, A. Mathew, L. Ekstrom, Hurricane Ivan—pipeline damage, integrity assessment, and on-bottom stability observations, in: Offshore Technology Conference, Houston, Texas, 2006.
M.C. Nodine, J.Y. Cheon, S.G. Wright, R.B. Gilbert, Mudslides during Hurricane Ivan and an Assessment of the potential for future mudslides in the Gulf of Mexico, OTRC Report Library no. 10/07C185, The University of Texas at Austin, Offshore Technology Research Center, 2007.
Kaiser, 2009, Modeling lost production from destroyed platforms in the 2004–2005 Gulf of Mexico hurricane seasons, Energy, 34, 1156, 10.1016/j.energy.2009.04.032
PRCI, Submarine Pipeline on-Bottom Stability, PRCI, 2002, Project Number PR-178-01132.
Tian, 2008, Modelling of pipe-soil interaction and its application in numerical simulation, Int. J. Geom. ASCE, 8, 213, 10.1061/(ASCE)1532-3641(2008)8:4(213)
Tian, 2010, The challenge of numerically implementing numerous force-resultant models in the stability analysis of long on-bottom pipelines, Comput. Geotech., 37, 216, 10.1016/j.compgeo.2009.09.004
Tian, 2011, Incorporating uplift in the analysis of shallowly embedded pipelines, Struct. Eng. Mech., 40, 29, 10.12989/sem.2011.40.1.029
Tian, 2015, Assessment of offshore pipelines using dynamic lateral stability analysis, Appl. Ocean Res., 50, 47, 10.1016/j.apor.2015.01.001
Det Norske Veritas, On-bottom stability design of submarine pipelines, DNV-RP-F109, 2007.
J. Zhang, Geotechnical stability of offshore pipelines in Calcareous Sand (Ph.D. thesis), University of Western Australia, Sydney, 2001.
Zhang, 2002, Modelling of shallowly embedded offshore pipelines in calcareous sand, J. Geotech. Geoenviron. Eng. ASCE, 128, 363, 10.1061/(ASCE)1090-0241(2002)128:5(363)
Tian, 2010, Advancing pipe-soil interaction models through geotechnical centrifuge testing in calcareous sand, Appl. Ocean Res., 32, 294, 10.1016/j.apor.2010.06.002
Hodder, 2010, A plasticity model for predicting the vertical and lateral behaviour of pipelines in clay soils, Geotechnique, 60, 247, 10.1680/geot.8.P.055
T. Sorenson, M. Bryndum, V. Jacobsen, Hydrodynamic forces on pipelines- model tests. Danish hydraulic Institute (DHI), Contract PR-170-185, Pipeline Research Council International Catalog No. L51522e, 1986.
Dassault Systèmes, ABAQUS User’s Manual, SIMULIA, Providence, RI, 2010.
Wantland, 1979
H. Brennodden, J.T. Lieng, T. Sotberg, An energy-based pipe-soil interaction model, in: Offshore Technology Conference, Houston, Texas, 1989, Paper OTC 6057.
Wagner, 1989, Pipe-soil interaction-model, J. Waterway Port Coastal and Ocean Eng. ASCE, 115, 205, 10.1061/(ASCE)0733-950X(1989)115:2(205)
G.J.M. Schotman, F.G. Stork, Pipe-soil interaction: A model for laterally loaded pipelines in clay, in: Offshore Technology Conference, Houston, Texas, 1987, Paper OTC 5588.
Calvetti, 2004, Experimental and numerical analysis of soil-pipe interaction, J. Geotech. Geoenviron. Eng. ASCE, 130, 1292, 10.1061/(ASCE)1090-0241(2004)130:12(1292)
Di Prisco, 2004, A model for landslide-pipe interaction analysis, Soils and Found., 44, 1, 10.3208/sandf.44.3_1
A.J. Fyfe, D. Myrhaug, K. Reed, Hydrodynamic forces on seabed pipelines: large scale laboratory experiments, in: Offshore Technology Conference., Houston, Texas, 1987, Paper OTC 5369.
V. Jacobsen, M.B. Bryndum, D.T. Tsahalis, Prediction of irregular wave forces on submarine pipelines, in: 7th International Conference on Ocean, Offshore and Arctic Engineering, Houston, 1988, pp. 23–32.
R.L.P. Verley, K. Reed, Use of laboratory force data in pipeline response simulations, in: Proceedings of the International Offshore Mechanics and Arctic Engineering Symposium, Hague, Netherlands, 1989.
H. Zeitoun, K. Tørnes, J. Li, S. Wong, R. Brevet, J. Willcocks, Advanced dynamic stability analysis, in: Proceedings of the ASME 2009 28th International Conference on Ocean, Offshore and Arctic Engineering, Honolulu, Hawaii, USA, 2009.
B.S. Youssef, M.J. Cassidy, Y. Tian, Balanced three-dimensional modelling of the fluid–structure-soil interaction of an untrenched pipeline, in: International Offshore (Ocean) and Polar Engineering Conference, Beijing, 2010.
Youssef, 2012
Westgate, 2010, The influence of sea state on as-laid pipeline embedment: a case study, Appl. Ocean Res., 32, 321, 10.1016/j.apor.2009.12.004
D.N. Cathie, C. Jaeck, J.C. Ballard, J.F. Wintgens, Pipelines geotechnics—state-of-the-art, in: Proc. of the Int. Symp. on the Frontiers in Offshore Geomechanics: ISFOG 2005, Perth, Taylor and Francis Group, Australia, 2005, pp. 95–114.