Offshore Pipelines

- Design, Installation, and Maintenance

Bog
  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

The development of oil and gas fields offshore requires specialized pipeline equipment. The structures must be strong enough to with stand the harshest environments, and ensure that production is not interrupted and remains economically feasible. However, recent events in the Gulf of Mexico have placed a new importance on maintenance and reliability. A new section; Condition Based Maintenance (CBM), introduces the subject of maintenance, written by Tian Ran Lin, Queensland University of Technology, and Yong Sun, CSIRO Earth Science and Resource Engineering. Two of the main objectives of CBM is maximizing reliability while preventing major or minor equipment malfunction and minimizing maintenance costs. In this new section, the authors deal with the multi-objective condition based maintenance optimization problem. CBM provides two major advantages: (1) an efficient approach for weighting maintenance objectives, and (2) a method for specifying physical methods for achieving those objectives. Maintenance cost and reliability objectives are calculated based on proportional hazards model and a control limit CBM replacement policy. Written primarily for engineers and management personnel working on offshore and deepwater oil and gas pipelines, this book covers the fundamentals needed to design, Install, and commission pipeline projects. This new section along with a thorough update of the existing chapters represents a 30% increase in information over the previous edition.

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Detaljer
Størrelse og vægt
  • Vægt790 g
  • coffee cup img
    10 cm
    book img
    15,6 cm
    23,4 cm

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    Design Fat Pig Pigs Pipelines Pipe Cathodic protection Asphaltene Insulation Corrosion Time-domain analysis Installation Galloping Time-frequency analysis Condition Monitoring Finite element Frequency domain analysis Pipeline Barge Operations Condition-based Maintenance Covariate Models Natural Frequency Design parameters Artificial intelligent techniques Signal processing and analysis Hydrodynamic Stability Fatigue Analysis Pigging Flow-induced Vibration Design Criteria Anti-agglomerates Thermal expansion Flexibles Paraffin Bending Stress Bottom tow Analysis procedure Cohesive and noncohesive soils Code Requirements Design codes clamps Cross-flow oscillations external pressure Environmental criteria Corrosion allowance Free span length External pipe coating Gel pigs Deepwater Hydrodynamic force Design waves Design Data Design procedure Hydrotest In-line oscillations Hydrodynamic parameters FBE Fluid compositions Lay stress Free span Off-bottom tow Offshore pipeline Oilfield pipelines Operating forces Partially buried pipelines Oceanographic Data Pipe-in-pipe insulation Proportional covariate model PVT measurements ILI tools Internal pressure Reliability based preventive maintenance J-lay Reservoir performance S-lay Risers Sagbend stress Seafloor bathymetry loads Solid production Space state models Surface tow Steady current Hydrotest condition Thick-wall pipe Thin-wall pipe Vortex-shedding frequency trenching Utility pigs Wax appearance temperature Wave shoaling P-F curve model MAOP Proportional Hazard Model Reel lay Mid-depth tow Overbend stress Soil friction Wave Refraction Precommissioning Soave-Redlich-Kwong model vibration mitigation stability guidelines Soil friction factor Soil parameters

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