Conceptual Casing Design for a HPHT Carbonate Development Project with High CO2 and H2S Contaminants

Swee Hong Gary Ong, Ungku Syafena Ungku Hamzah, J. Manson, Ahmad Hakam Bin Abdul Razak, L. Umar, N. Kongpat, C. Grant, Kittipat Wejwittayaklung, Pornchuda Konganuntragul, Nuttapon Piyakunkiat, Khairul Abdul Rashid, Wararit Toempromraj, C. Chanpen, P. Bandyopadhyay, Mohamad Kamal Bin Hamdan, Prapapor Jantasuwanna
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引用次数: 1

Abstract

HPHT wells are typically associated with high complexity, technically challenging, long duration, high risk and high NPT as many things could go wrong especially when any of the critical nitty-gritty details are overlooked. The complexity of this project is amplified with very high level of contaminants compounded by high pressure and high temperature environment. In the conceptual planning phase for the upcoming development of such project where its scale and severity are unprecedented in the country/region, a fit for purpose casing and tubing design is critically important to ensure the well integrity over its design life is assured. At the same time, cost optimization can be achieved utilizing industry practices, testing and qualification of materials and vast learning from incidents and failures occurred in similar HPHT projects over the last three decades scattered around the world. This paper intends to outline the challenges and optimization of casing design philosophy which is drawn upon various perspectives such as long term well integrity, drilling operations, working stress design, effect of compaction and subsidence, probability of failure analysis, multi-well thermal analysis, downhole material corrosion performance, connection performance and a combination of all the above in a holistic manner. A particular focus would be discussing the delicate balancing act between satisfying the working stress design of downhole tubular versus the complexity of downhole material selection work. With the given challenging environmental condition, this points towards exotic type of CRA materials which require certain magnitude of yield strength deration attributed to the given environmental condition and their respective manufacturing processes.
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高CO2和H2S污染物高温高压碳酸盐开发项目套管概念设计
高温高压井通常具有高复杂性、高技术挑战性、长工期、高风险和高NPT的特点,因为很多事情都可能出错,特别是当任何关键的细节被忽视时。这个项目的复杂性被高压和高温环境中非常高的污染物所放大。在即将开发的此类项目的概念规划阶段,其规模和严重程度在国家/地区是前所未有的,适合用途的套管和油管设计对于确保井在设计寿命期间的完整性至关重要。与此同时,利用行业实践、材料测试和鉴定,以及从过去30年世界各地类似高温高压项目中发生的事故和失败中吸取的大量经验教训,可以实现成本优化。本文将从井的长期完整性、钻井作业、工作应力设计、压实和沉降影响、失效概率分析、多井热分析、井下材料腐蚀性能、连接性能以及上述所有因素的综合等多个角度,概述套管设计理念所面临的挑战和优化。需要特别关注的是如何在满足井下管的工作应力设计和复杂的井下材料选择工作之间取得微妙的平衡。在给定的具有挑战性的环境条件下,这指向了特殊类型的CRA材料,这些材料需要一定程度的屈服强度衰减,这归因于给定的环境条件及其各自的制造工艺。
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