A Case Study of Design and Installation of Upper Completion System for a Deepwater Gas Field in South China Sea

Yi Huang, Wen-bo Meng, Donglei Jiang, Xue Peng Wang, Haiquan Chen, Jianbo Su, Nigel Ruescher, Fei Xu, H. Diao, Heng Wang, Tan Xiao, Ying Hao Wang, Yi Yu
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Abstract

The urgent demand to replace the rapidly declining conventional reserves is driving China's operators to accelerate the development of deepwater reservoirs. SHENHAI Project is the first deepwater project operated by CNOOC China Ltd., locates in water of 1220m to 1546m in South China Sea. Deepwater completions differentiate themselves not only by unique technical challenges, but also by their high cost, risk, and long project cycles. A sound project management process is essential to ensure flawless execution. By reviewing the key steps of the SHENHAI deepwater completion campaign, such as upper completion design, critical equipment selection, interface management, workshop preparation, and final project execution, lessons learnt, etc., this paper provides both a job cycle of completion design-to-execution and a methodology to manage a complex project by addressing the challenges inherent in the deepwater completion process. As a result, the well completion campaign was completed ahead of schedule. A total of 11 deepwater wet-tree wells were successfully delivered as designed including two dual-zone hydraulic controlled intelligent wells. The upper completion design has been proven to be safe and reliable with first applications of several critical upper completion tools in the region, such as Nitrogen-Charged Surface Controlled Sub-surface Safety valve (SCSSV), Hydrostatic-Setting production packer and quartz-based permanent downhole pressure gauge. This success demonstrates the completion design and practices are applicable for this deepwater project and can be extended to further offset deepwater projects in this area. This paper describes case details of successful upper completions of SHENHAI project aiming to provide information and experiences for engineers who may face the similar challenges.
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南海某深水气田上部完井系统设计与安装实例研究
替代快速下降的常规储量的迫切需求,正促使中国的油公司加速开发深水油藏。深海项目是中海油中国有限公司运营的第一个深水项目,位于南海1220米至1546米的水域。深水完井不仅具有独特的技术挑战,而且成本高、风险大、项目周期长。一个健全的项目管理过程是确保完美执行的必要条件。通过回顾SHENHAI深水完井作业的关键步骤,如上部完井设计、关键设备选择、界面管理、车间准备和最终项目执行、经验教训等,本文提供了完井设计到执行的工作周期,以及通过解决深水完井过程中固有的挑战来管理复杂项目的方法。因此,完井作业提前完成。共成功交付了11口深水湿树井,其中包括2口双层液压控制智能井。通过在该地区首次应用几种关键的上部完井工具,如充氮地面控制井下安全阀(SCSSV)、静液坐封生产封隔器和石英基永久井下压力表,上部完井设计已被证明是安全可靠的。这一成功证明完井设计和实践适用于该深水项目,可以推广到该地区的深水项目。本文介绍了申海项目上部完井的成功案例,旨在为可能面临类似挑战的工程师提供信息和经验。
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