DEEPWATER FLOATING PRODUCTION SYSTEM DESIGN AND ANALYSIS

 

COURSE DESCRIPTION

Floating Production Systems are becoming more commonas oil discoveries are made in deeper waters. The objective soft his Workshopare to provide an introduction the drivers for floater selection and design, and to provide an appreciation of the main tool sand method designing and analyzing the sestructures.

The program will begin by taking abroad look at deep water development from the stand point of field development planning, processing, and concept selection. Emphasis will be on the application of structuraland naval architectural principles, and design codes, to the sizing and analysis of performance of moored plat form sandrisers. Examples willin clued Spars, Tension Leg Platforms, Semi-Submersibles and FPSOs.

After this course the participants should be able toi dentify the design drivers for the plat form sand to perform high level sizing. They shoul dunderstand the concept off loater stability, the different type sofmooring system sandrisers, and methods for their design and analysis.

By fully participating in this short course, participants with solid background inconventional offshore oil field development, planning, processing and technology application will gain ground understanding on the greater risk of deepwater oil field development, which in short it need shigher commitment, higher and world complex technology and muchhigher cost involvement.

In the initial part of the course for some introduction way of addressed economic magnitude, technology services and major specific equipment and source required one achstage of deepwater field from the exploration development to the production stages this short course will be beneficial for deepwater oil field engineers, planners as well as the regulator (theauthorities) and oil field contractors and services companies.

COURSE OUTLINE

  1. Introduction to Deep water Development Systems
  2. Introduction,Trends in deep water development systems,examples of deepwater
    projects,planning issues, considerations of deep water field development,
    concept selection.
  3. Drilling in deep water environment.
  4. Deep water challenges and new technologies,drilling functions and
    considerations,MODU drilling,drilling from Spar and TLP.
  5. Conceptual and Functionality of Floating Production Systems.
  6. Overview of floater capabilities,dry tree system infixed, compliant Tower,TLP,
    and Spar platform,wet tree systemin TLP,cell Spar,FPSO,control buoy,SS
    Tieback and Semi-FPS.
  7. Strength consideration off loating structures.
  8. Basic stresses,local buckling stresses,hydro static pressure,plated and
    tubular structure design,design rulesand requirement.
  9. Fatigue assessment of floating structures.
  10. Fatigue capacity,action and loads,S-Ncurves,nominal and hot and spotstress,
    simplified,deterministic and spectral-based fatigue assessment,fracture
    mechanics.
  11. Hydro dynamics and global response offloaters.
  12. Wave spectra and its application,wave and fluid forces,dynamics of
    floating bodies,wave statistics,
  13. Irregularity of sea way and histogram,response amplitude operator.
  14. Hydrostatic and Stability of Floaters.
  15. Important rules of floating structure design, coordinate system and
    transformations, buoyancy and stabilityparameters,hydro static stiffness,
    MODUstability rules
  16. Mooring design and analysis.
  17. Effect of wind and currentloads,station-keeping,passive mooring system,
    catenary spread and taut mooring system,mooring components and
    equipment

WHO SHOULD ATTEND

  1. Executive Engineers and Managers who are involve and dinterestedin:
  1. Civil or Mechanical Engineers and Naval Architects with basic
    background in structural engineering and hydrodynamics,but not familiar with floating structure design.

METHOD
Lecturing, workshop, interactive discussion, sharing and case study.

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