Offshore Platforms
Using depleted gas fields for gas storage is a rapidly growing sector driven by the need to enhance energy security and futureproofing for hydrogen storage. The repurposing of depleted fields and offshore assets for CO2 storage and sequestration will also present major challenge moving forward. Sharing the same change as hydrocarbon production platforms FPI GRE-RTR are ideally suited for these environments
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Being approximately 75% lighter than steel GRE -RTR offers exceptional weight saving opportunities. Weight savings through switching to composite materials directly impacts of the viability of the platform due to reduction in topside weight increasing the life span of the jacket.
Marine environments are highly corrosive, necessitating expensive corrosion-resistant alloys (GRA) and incurring high maintenance costs for insulated piping to address corrosion under insulation (CUI). FPI GRE-RTR, being completely corrosion-resistant, eliminates the need for costly GRA materials and maintenance for CUI issues.
Welding and hot works can be challenging in offshore environments. Therefore, the reduction is onsite fabrication and hot works add enormous benefits. FPI GRE-RTR being lightweight enables wider use of prefabrication which combined with GRE-RTR jointing systems reduces onsite fabrication and hot works requirements
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