A Critical Assessment of Deepwater Gulf of Mexico Floating Platform Engineering, Procurement, Construction and Installation EPCI Contracting Strategies and Cycle Times

R. D'souza, Shiladitya Basu
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Abstract

A major objective of a greenfield deepwater field development with a host platform, is to achieve the first production milestone set at project sanction. A field development consists of subsurface characterization, reservoir depletion, drilling and completion, subsea production system, host platform and export system. Of these, the floating host platform is a major capital expense and presents a significant execution challenge. Over fifty deepwater floating platforms have been installed in the US Gulf of Mexico (GoM) since 1986, representing the four major platform options; spars, semisubmersibles, Tension Leg Platforms (TLPs) and Floating Production Storage and Offloading (FPSO) platforms, operated by International, Independent and National Oil Companies. They are installed in water depths ranging from 500 m to 3,000 m, with production capacities from 40,000 to over 250,000 barrels of oil equivalent per day (boepd). Over this period the technologies, operator, and supply chain capabilities to execute deepwater projects have matured. An operator embarking on a deepwater project must credibly benchmark cycle times for sequential field development stages (Appraise, Select, Define and Execute). Many variables determine these cycle times including reservoir characterization, fluid properties, estimated recovery, location, access to pipeline networks, water depth, subsea architecture, platform size and complexity and contracting strategy. To provide these benchmarks, the authors have undertaken a critical assessment of ten recent, producing deep and ultra-deepwater field developments in the US GoM, focusing on project execution of the floating platform. Selected field developments capture all floating platform types, several contracting strategies, a wide range of water depths, various reservoir geologies and field locations that cover the entire GoM. The information is intended to assist operators validate cycle times when planning a development, especially the Execute stage. In addition, the paper addresses emerging trends in deepwater GoM field developments following the oil price collapse in 2014 and 2020.
墨西哥湾深水浮式平台工程、采购、施工和安装EPCI合同策略和周期时间的关键评估
拥有主平台的全新深水油田开发的主要目标是实现项目批准时设定的第一个生产里程碑。油田开发包括地下表征、油藏枯竭、钻井和完井、海底生产系统、主机平台和出口系统。其中,浮动主机平台是一个主要的资本支出,并提出了一个重大的执行挑战。自1986年以来,美国墨西哥湾(GoM)已经安装了50多个深水浮式平台,代表了四种主要的平台选择;由国际、独立和国家石油公司运营的桅杆、半潜式平台、张力腿平台(TLPs)和浮式生产储卸(FPSO)平台。它们安装在500米至3000米的水深范围内,生产能力从每天4万到25万桶油当量(boepd)不等。在此期间,执行深水项目的技术、运营商和供应链能力已经成熟。开始深水项目的作业者必须对连续的油田开发阶段(评估、选择、定义和执行)进行可靠的基准测试。许多变量决定了这些循环时间,包括储层特征、流体性质、预计采收率、位置、管道网络、水深、海底结构、平台大小、复杂性和承包策略。为了提供这些基准,作者对美国墨西哥湾最近10个深水和超深水油田的开发进行了关键评估,重点关注浮式平台的项目执行情况。选定的油田开发项目涵盖了所有浮式平台类型、多种合同策略、广泛的水深、各种油藏地质和覆盖整个墨西哥湾的油田位置。这些信息旨在帮助作业者在制定开发计划时验证周期时间,特别是在执行阶段。此外,本文还讨论了2014年和2020年油价暴跌后深水油气开发的新趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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