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Subsea Installation of an Interventionless Annular Safety Valve Reduces Operational Time A Case Study

机译:介入式环形安全阀的海底安装减少了案例研究的操作时间

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With the downturn in oil price and recent reduction in drilling activity, especially in high-cost environments, the industry is increasingly looking to save time, cost, and risk throughout all drilling and well operations. Conventional completion operations are being challenged to identify possible ways of reducing time and cost. To address this, the industry is adopting new technologies and methodologies to reduce risk, rig time, and nonproductive time (NPT) and to conduct operations in way that traditional tools do not allow. This paper focuses on the first subsea deployment of a remotely activated annular safety valve (ASV) in a deepwater well located in the Norwegian sector of the North Sea. ASVs are traditionally set by one of four methods: a dedicated setting line to surface, applied tubing pressure, applied annulus pressure, or the shifting of a mechanical sleeve, which allows communication to a setting chamber. This paper describes an approach for running the ASV that requires no dedicated setting line and is initially insensitive to tubing pressure; this facilitates the full testing of the completion prior to setting the ASV packer. Using existing rig infrastructure, a frequency modulated pressure cycle is sent from surface to command a sleeve to move and allow communication with the setting chamber. The ASV packer is then set and tested.
机译:随着石油价格的低迷和近期钻井活动的减少,特别是在高成本环境中,业内越来越多地期待在整个钻井和良好运营中节省时间,成本和风险。传统的完成操作受到挑战,以确定减少时间和成本的可能方法。为了解决这个问题,业界采用新的技术和方法,以降低风险,钻井时间和非生产时间(NPT)和方式,传统的手段不允许进行操作。本文侧重于位于北海挪威地区的深水井中的首次遥控环形安全阀(ASV)的第一次海底部署。传统上由四种方法中的一种设置ASV:专用设置线到表面,施加的管道压力,施加的环压力或机械套筒的换档,这允许与设定室通信。本文介绍了一种运行ASV的方法,该方法不需要专用设置线,并且最初对管道压力不敏感;这有助于在设置ASV包装器之前完全测试完成。使用现有钻机基础设施,从表面发送频率调制压力循环以命令套筒移动并允许与设定室通信。然后将ASV包装器设置并测试。

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