首页> 外文会议>Society of Petroleum Engineers International Petroleum Technology Conference >Self Standing Riser Offers Alternative to Conventional Deep Water Approach for Developing Marginal Deep Water Oil and Gas Resources NKeith K. MillheimDSPE, Nautilus International LLC and Geir Aune, MEPS-First Oil Ltd.
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Self Standing Riser Offers Alternative to Conventional Deep Water Approach for Developing Marginal Deep Water Oil and Gas Resources NKeith K. MillheimDSPE, Nautilus International LLC and Geir Aune, MEPS-First Oil Ltd.

机译:自我站立式提升机提供常规深水方法的替代方案,用于开发边际深水油气和天然气资源N Keith K. Millheimd Spe,Nautilus International LLC和Geir Aune,MEPS-First油气有限公司

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In water depths greater than 150 meters hundreds of oil and gas discoveries have been made and deemed non-commercial for one reason or another. Many of these fields are in concessions or leases without any hope of near term development because the conventional approach for developing an offshore field requiring a MODU, subsea completions, and some type of floating production system is cost prohibitive. Also, many of the current concession holders without deep water experience feel deep water technology is too complex and risky to venture into without a super-major or major independent with deep water experience as their operating partner. Also, geophysical technology has delineated hundreds of high probability deep water oil and gas leads that will not be drilled because the indicated field sizes are too small. Yet the history of basin development clearly shows most of the big fields are found first and are few. Most of the further discoveries follow a log normal distribution where size of the field reduces but the frequency of the smaller fields increases. The challenge is how to make these marginal deep water oil and gas fields commercial. This paper presents the Self Standing Riser (SSR) technology as an enabling technology which could be the solution for commercializing non-economic deep water oil and gas fields. This paper describes the SSR and how it can enable lower cost drilling, achieve faster first oil, lower the required capital that is necessary to commission a project, and how the early production can be used to provide capital to complete the project. A field test of an SSR in 1000 meters of water for nearly four and a half years is cited as well as the next steps to use the SSR for a marginal field development (see Figure 1 showing the buoyancy device after 2 years). How the SSR provides a new way for intervention in deep water using coiled tubing, and the possibility for developing deep water heavy oil and other applications also will be discussed.
机译:在大于150米的水深,已经制造了大量的石油和天然气发现,并被视为一个原因或另一个原因。这些领域的许多领域都是在没有任何近期开发的希望,因为开发需要MODU,海底完成和某种类型的浮动生产系统的传统方法是成本令人望而却步的。此外,许多没有深水经验的当前特许权持有人感觉深水技术过于复杂,风险冒险,没有超级专业或独立与其经营伙伴的深水经验。此外,地球物理技术已经描绘了数百种高概率深水油和天然气引线,因为所示的场尺寸太小。然而,盆地发展的历史清楚地表明了大部分的大型领域首先找到,很少。大多数进一步的发现遵循日志正态分布,其中字段的大小减少但较小字段的频率增加。挑战是如何使这些边际深水油和天然气田的商业。本文介绍了自我站立式提升机(SSR)技术,作为一种能力技术,可以成为商业化非经济深水油气和天然气领域的解决方案。本文介绍了SSR及其如何实现较低的成本钻井,实现更快的第一石油,降低委员会项目所需的所需资金,以及如何使用早期生产来提供资本来完成项目。引用了1000米水中SSR的现场测试,近四年来,以及使用SSR进行边际田间开发的下一步步骤(见图1显示2年后的浮力设备)。 SSR如何利用卷绕管道为深水进行干预的新方法,也将讨论深水重油和其他应用的可能性。

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