Manual Mechanics of Offshore Pipelines: Volume 1 Buckling and Collapse

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Pagina Inhoudsopgave Chapter 1 Introduction. Chapter 3 Pipe and Tube Manufacturing Processes. Chapter 13 Elements of Plasticity Theory. Mechanical Testing. Plastic Anisotropy in Tubes. Sanders Circular Cylindrical Shell Equations. Glossary and Nomenclature. Units and Conversions.

Mechanics of Offshore Pipelines Volume 1: Buckling and Collapse

Populaire passages Pagina xii - Bishop is a professor of aerospace engineering and engineering mechanics at The University of Texas at Austin and holds the Joe J. Bibliografische gegevens. Be the first to leave a review. Facebook Email Print. Description Description As exploration and production of oil and gas move to deeper waters, a precise understanding of the mechanical behavior of tubular structures becomes increasingly important.

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Your Rating:. Validation of the performance of offshore, deep water insulation[C]. Rio De Janeiro, Brazil, , Vol. Collapse arrestors for deepwater pipelines: Finite element models and experimental validations for different cross-over mechanisms[C]. Hamburg, Germany, — Zhou Chengti, Ma Liang.

Corona E, Kyriakides S. On the collapse of inelastic tubes under combined bending and pressure[J]. International Journal of Solids and Structures, , 24 5 : — Asymmetric collapse modes of pipes under combined bending and external pressure[J]. American Society of Civil Engineers, , 12 : — Collapse of partially corroded or worn pipe under external pressure[J]. International Journal of Mechanical Sciences, , 50 12 : — Reliability analysis of 2 m multi-purpose deep-sea environment simulator[J].

Journal of Shanghai Jiaotong University, , 24 4 : 17—25 in Chinese. Typical case study in hyperbaric chambers[J]. Petroleum Engineering Construction, S1 : 14—16 in Chinese. Research of testing apparatus for deep water petroleum engineering[J]. China Petroleum Machinery, , 39 8 : 1—3 in Chinese.

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Wang Jinlong. Local buckling of deepwater oil-gas pipeline under high hydrostatic pressure[J]. Dynamic implosion of underwater cylindrical shells: Experiments and computations[J]. International Journal of Solids and Structures, , 50 19 : — A review of external pressure testing techniques for shells including a novel volumecontrol method[J].

Experimental Mechanics, , 50 6 : — Development of deep-water simulation experimental device for subsea blowout preventer stack control system[J]. Oil Field Equipment, , 42 1 : 1—5 in Chinese. Liu Fukang. Successful development of deep-water simulated experimental pressure device with 72 MPa[J].

Mechanics of Offshore Pipelines - 1st Edition

Netto T A. On the effect of narrow and long corrosion defects on the collapse pressure of pipelines[J]. Applied Ocean Research, , 31 2 : 75— Chater E, Hutchinson J W. On the propagation of bulges and buckles[J]. Journal of Applied Mechanics, , 51 2 : — Initiation of propagating buckles from local pipeline damages[J].


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Journal of Energy Resources Technology, , 1 : 79— Dyau J Y, Kyriakides S. On the localization of collapse in cylindrical shells under external pressure[J]. International Journal of Solids and Structures, , 30 4 : — On the collapse of dented cylinders under external pressure[J].

International Journal of Mechanical Sciences, , 38 5 : — Kyriakides S. Propagating instabilities in structures[J]. Advances in Applied Mechanics, , 67— Dynamic performance of propagation buckle and integral buckle arrestors in offshore pipelines[J]. Ocean Technology, , 32 2 : 60—65 in Chinese. Kyriakides S, Netto T A. On the dynamics of propagating buckles in pipelines[J]. International Journal of Solids and Structures, , 37 46 : — Buckle propagation in pipe-in-pipe systems.