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A Retrospective Review of 10 years of Scale Management in a Deepwater Field: From Capex to Plateau Production

机译:深水领域10年规模管理的回顾述评:从支本到高原生产

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The field in question consists of four reservoirs with varying barium levels (15 ppm to 320 ppm). For pressure support seawater injection has been applied from the start of field life. Prior to field start up, studies were conducted to review the order of expected injection water breakthrough for each well, the location of breakthrough along the length of the production sections, the feasibility of bullhead deployed squeezes and the implications of barium ion stripping. These issues were all assessed to generate a scale management strategy for the field. Despite uncertainties in the original reservoir model, the order of injection water breakthrough across the field was observed to be correct and the information on placement proved very useful in building scale squeeze treatments. The challenge of rapid injection water breakthrough in the field during its early life was addressed with development of pre-production squeeze treatments applied during new well completions. This eliminated the need to shut in wells whilst awaiting mobilisation of DSVs for treatment deployment. As the field matures, tailored scale squeeze treatments were developed for each of the 25 production wells. Over the life of the wells the squeeze designs were updated to take into account changing water rates, changing water composition and thus MIC for the squeeze chemical. The positive contribution of the downhole continual injection chemical was also shown to extend the squeeze lifetimes by allowing a lower MIC value to be used for treatment design in the production section of the wells. Optimisation of the scale management programme has seen wells considered to be outside the scale window eliminated from the squeeze treatment campaigns, reduction in chemical volumes being applied and extended squeeze lifetime for treatments based on monthly review of well performance/water chemistry/inhibitor residuals.
机译:问题的领域由四个具有不同钡水平的储层(15 ppm至320 ppm)组成。对于压力支持,海水注射已从场地寿命的开始。在现场开始之前,进行了研究,以审查每个孔的预期喷射水突破的顺序,沿着生产部分的长度的突破位置,展示杆头挤压的可行性以及钡离子剥离的影响。这些问题都被评估为为该领域的规模管理策略产生规模管理策略。尽管原有的储层模型中存在不确定性,但观察到整个领域的注射水突破的顺序是正确的,并且在建设规模挤压治疗方面证明了关于放置的信息。在新的井完井中施加的预生产挤压处理的发展,解决了本领域快速注射水突破的挑战。这消除了在等待动员DSV以进行治疗部署时关闭井中的需要。随着田间成熟,为25个生产井中的每一个开发了量身定制的挤压处理。在井中的寿命中,更新挤压设计以考虑更换的水费,改变水成分,从而进行挤压化学品。还显示井下连续注射化学品的正贡献,通过允许将较低的MIC值用于井的生产部分中用于治疗设计来延长挤压寿命。尺度管理计划的优化已经看过井在挤压处理活动中消除的尺度窗口,基于井性能/水化学/抑制剂残留的每月审查,减少应用和延长挤压寿命。

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