POWER INTERCONNECTION BETWEEN TWO EXISTING DEEP-WATER FPSOs - A KEY ENABLER FOR PRODUCTION INCREASE

Bruno Leforgeais, Faradj Tayat
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Abstract

The first-ever power interconnection between existing Floating Production Storage and Offloading (FPSO) units, including retrofit of existing power generation and integration of an overall Power Management System, has enable the implementation of subsea multiphase pumping to activate the existing production loops.Despite gas lift activation at riser base, the back pressure generated by pressure drop in the subsea network was limiting the liquid production of the high productivity wells. Providing a pressure boost in the production network using the subsea multiphase pumps enabled to lower the well head pressure, thus increasing production rates and ultimate recovery.The paper will present the miscellaneous technical challenges that have been faced during the project development from the early design stage down to commissioning, start up and operation of both FPSOs as an integrated asset while maintaining and enhancing the full oil and gas production.It will cover both surface and subsurface aspects with the design and implementation of power generation upgrade, electrical network modifications, overall power management system involving load sharing and load shedding as well as the interconnecting power cable (IPC) with specific dynamic sections and the power supply and integration of the subsea multiphase pumps with an offset up to 18 km.
两个现有的深水fpso之间的电力互连-增加产量的关键因素
现有浮式生产储存和卸载(FPSO)装置之间的首次电力互连,包括对现有发电设备的改造和整体电源管理系统的集成,使海底多相泵的实施能够激活现有的生产循环。尽管在隔水管底部启动了气举,但海底网络中压降产生的背压限制了高产井的产液。通过使用海底多相泵来提高生产网络的压力,降低井口压力,从而提高产量和最终采收率。本文将介绍项目开发过程中所面临的各种技术挑战,从早期设计阶段到调试,启动和运营两个fpso作为一个综合资产,同时保持和提高油气产量。它将涵盖地面和地下方面的设计和实施,包括发电升级、电网改造、涉及负载分担和减载的整体电源管理系统,以及具有特定动态部分的互连电源线(IPC)、电源供应和水下多相泵的集成,其偏移量可达18公里。
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