Subsea Pipeline Design, Analysis, and Installation

  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

As deepwater wells are drilled to greater depths, pipeline engineers and designers are confronted with new problems such as water depth, weather conditions, ocean currents, equipment reliability, and well accessibility. Subsea Pipeline Design, Analysis and Installation is based on the authors' 30 years of experience in offshore. The authors provide rigorous coverage of the entire spectrum of subjects in the discipline, from pipe installation and routing selection and planning to design, construction, and installation of pipelines in some of the harshest underwater environments around the world. All-inclusive, this must-have handbook covers the latest breakthroughs in subjects such as corrosion prevention, pipeline inspection, and welding, while offering an easy-to-understand guide to new design codes currently followed in the United States, United Kingdom, Norway, and other countries.

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Detaljer
Størrelse og vægt
  • Vægt1180 g
  • coffee cup img
    10 cm
    book img
    15,1 cm
    22,9 cm

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    Stress Resistance Structural design Cleaning Welding Positioning Drying Finite element analysis Theoretical model Capex High-strength steel Dynamic analysis Components Analytical solutions Tensile strength Pullover Failure Mode ECA Collapse Offshore Installation Drop Corrosion prevention Tensile test Compressive Strength FE-Simulation Penetration Experimental test Finite element model Dynamic Characteristics High-pressure Cross-sectional analysis High Temperature Analytical Method Limit state design Failure mechanisms Fatigue and Fracture Operation and Maintenance Fatigue Damage Nonlinearity Strains Viv RTP Thermal expansion Hydrodynamic forces Fast Fracture 3D classical lamination theory analysis methodology Accidental Limit State (ALS) armor layer Arctic pipeline bending strength calculations Allowable Stress Design bundle system cathodic protection design Design example Design codes buckling and collapse behavior burst pressure compressive test Design code design through analysis effective axial force Flexible pipe Environmental loads frequency domain solution external pressure general design Fatigue Limit State (FLS) fatigue ad fracture geothermal analysis field development global buckling gas transmission pipelines HPHT impact response analyses design approach detailed design Design procedure in-situ behavior design guideline Hydrostatic Testing ice scour analysis installation methods installation technique Installation vessel large wall thickness Lateral Buckling material grade selection loading condition FEA Analysis FE analysis Free spanning free spans finite element design Local Buckling Mitigations low-cycle fatigue (LCF) oil transportation pipelines on-bottom stability Free span galvanic anodes system Morison equation parametric study oil-gas two-phase flow pipelines Pipeline installation pipeline trenching and burying PIP system pipeline analysis pipeline rock dumping Hydraulic and thermal analysis pipeline resistance Pipe-soil interaction model pullover response analyses pipeline tie-in installation analysis properties of components Route optimization span correction larger diameter lateral displacement S-N curves Limit-State Design (LSD) high-cycle fatigue (HCF) Subsea pipeline system Steady current safe weld excavation size Soil sample submerged weight stability and mechanical protection structural behavior unbonded flexible pipe installation method internal corrosion inhibitor Trawl impact limit-state strength stabilization and design against upheaval buckling Wave Theory Wall thickness theoretical analysis pipeline coating Pipeline commissioning pipeline walking plastic collapse seismic analyses Ultimate Limit State (ULS) Upheaval buckling Seismic Damage Serviceability Limit State (SLS) Weld defect repair stabilizing method subsea pipelines seabed model shore approach soil investigation time domain solution Soil parameters steel carcass subsea survey vortex-induced-vibrations (VIV) water pipelines wave-induced oscillations

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