SEA Global completed engineering across the define phase, FEED, detailed design, and execution support for a 19 km, 20-inch pipeline transportation system.
The scope of work encompassed steady-state and transient thermohydraulic flow assurance modeling to confirm expected performance, detailed engineering for the pipeline system, and structural design for two subsea PLEMs with piled foundations and spools supports. It also involved developing integrated solutions for floating systems, including riser configuration and mooring design. Furthermore, the team managed material selection, procurement tender evaluations, technical support for the partial replacement of aged infrastructure, and the design of subsea spools, connection hardware, and commissioning strategies.
Pipeline Length and Diameter
19 km, 20-inch
Flexible Riser Internal Diameter
16-inch
Piping Diameters on FSO
18-inch
Medium
Liquid Hydrocarbons
Operating Pressure
10MPa
Scope of Work
Flow Assurance Design
Steady-state and transient thermohydraulic modelling was undertaken to confirm the expected operational performance.
Integrated Floating Systems, Riser, and Moorings
Developed integrated solutions for floating units (including offtake), including riser configuration and mooring system design for safe offshore operation.
Materials Selection and Procurement Support
Specified materials for procurement, and evaluated tenders for company provided items.
Support through Execution Phase
Provided technical support during the execution phase to ensure alignment of contractor capabilities with project requirements.
Subsea Structure Design
Designed two subsea PLEMs utilizing piled foundations, and piled supports for the tie-in spools.
Pre-commissioning and Commissioning Strategy
Technical support provided for the partial replacement of aged offshore infrastructure and installation of the new assets.
Spools, Hardware, and Connection Systems
Designed spools and connection hardware to ensure safe and efficient tie-ins between subsea components.
Pipeline Design
Detailed engineering for the pipeline system to ensure reliable and efficient hydrocarbon transport from the onshore production sites to the FSO facility.