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Un-Locking Subsea Reserves Through a System-Based Approach for Tie-Back Solutions

机译:通过基于系统的方法解决海底储藏问题

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Offshore developments must evolve if the industry is to unlock subsea reserves and increase recovery. A novel method of achieving these goals is through use of a systematic approach to subsea tiebacks that combines new technologies with minor modifications to the existing topsides equipment. The tieback strategy is a system-based approach with a combination of qualified disruptive technologies and field-proven solutions that will improve costs, reduce the number of interfaces, minimize the modifications needed on the topsides, critical for platforms with space and weight limitations, and maximize the use of existing assets. Significant investment was made to qualify disruptive and groundbreaking technologies to make this possible. The following summarizes the main components of the subsea system: 1. Seabox subsea water treatment and injection provides higher quality water for reservoir injection and increased recovery 2. Subsea chemical storage that allows longer subsea tiebacks and mitigates weight and space limitations on topside structures; only power and communication are needed from the topside 3. Subsea treatment of produced water subsea for either discharge directly to sea or to re-inject 4. Subsea automatic pig launcher combined with a single pipeline that ensures continuous flow at a lower capex 5. All-electric controls and valves eliminate the need for utility pipelines and expensive umbilicals 6. Applying field-proven tie-in systems integrated with flexible pipe solutions and customized subsea structures In addition to exploring the above components, this paper also explores combining the components into a comprehensive system. The system-based approach will unlock previously uneconomical reservoirs.
机译:如果该行业是解锁海底储备并增加恢复,则离岸发展必须发展。通过利用系统的途径来实现这些目标的新方法,这些方法将新技术与对现有的拓展设备的微小修改结合起来。重建策略是一种基于系统的方法,具有合格的中断技术和现场证明解决方案的组合,可以提高成本,减少接口的数量,最大限度地减少了顶部所需的修改,对于具有空间和重量限制的平台至关重要,以及最大限度地利用现有资产。符合有资格破坏性和突破性技术的重要投资来实现这一目标。以下总结了海底系统的主要组成部分:1。海箱海底水处理和注射为储层注射提供更高质量的水,增加回收率2.海底化学品储存,允许更长的海底阻尼和减轻对联结构的重量和空间限制;只需要电源和通信的顶端3.海底处理生产的水海底用于直接放电或重新注入4.海底自动猪发射器与单个管道相结合,以确保在下部支出5的连续流动。所有 - 电气控制和阀门消除了对公用事业管道和昂贵的脐带的需要。除了探索上述组件之外,还应用了集成的柔性管道解决方案和定制海底结构的现场证实搭配系统,还探讨了组件将组件组合成一个综合制度。基于系统的方法将解锁以前不经济的水库。

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    《》|2019年|1861-1870|共10页
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    Kristian Mikalsen; Cobie Loper;

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