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OTC 21758--Efficient Perforation of High-Pressure Deepwater Wells

机译:OTC 21758 - 高压深水井的高效穿孔

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This paper describes the planning, logistics, and technology used in Cascade and Chinook, the two largest deepwater highpressure perforation jobs successfully executed to date in the Gulf of Mexico (GoM). These Lower Tertiary well completions have gross perforation intervals over 800 feet and downhole pressures higher than 19,000 psi. This paper discusses the technology used in the planning stages to predict gunshock loads on completion equipment, and the logistics and procedures used to minimize costs, rig time and risks while maintaining safe operations. Perforating several intervals in one run was required to complement a single-trip multi-zone frac-pack system in which all downhole packers, screens and service tools are run at once, and all zones are stimulated in a single trip. Perforating all intervals with long gunstrings and then frac packing multiple zones in a single trip saves substantial rig time compared with performing conventional stacked frac packed completions requiring multiple trips per perforated zone. Thousands of perforating jobs are conducted successfully worldwide each month. However, there are a small number of jobs, typically high-pressure deepwater wells, where gun shock is a real and significant risk. When planning perforation jobs in deepwater high-pressure wells, engineers strive to minimize the risk of equipment damage due to perforating gunshock loads, such as bent tubing and unset packers, and a potential fishing job. For Cascade and Chinook, peak gunshock loads were evaluated with software that predicts the pressure waves in the completion fluid, and the associated structural loads on all well components. Fast gauge pressure data shows that predicted wellbore pressure transients are sufficiently accurate both in magnitude and time when the input reservoir response data is close to the actual field data. We discuss in detail the logistics and procedures used for loading and transportation of guns, building the BHA, and running the gun string in the well. The logistics for mobilizing over 700 lbs of explosives requires extensive planning to minimize time and costs. Minimizing the time needed for each gun connection is crucial to minimize rig time, and several approaches were employed. The logistics and procedures outlined in this paper led to a rig time reduction of over 67% for the execution of the largest deepwater high-pressure perforation jobs done to date in the Gulf of Mexico.
机译:本文介绍了级联和Chinook中使用的规划,物流和技术,这两个最大的深水仰卧性穿孔工作在墨西哥湾(GOM)的日期成功执行。这些较低的叔井完井具有超过800英尺,井下压力的总穿孔间隔高于19,000 psi。本文讨论了规划阶段中使用的技术,以预测完成设备上的枪声负载,以及用于最小化成本,钻机时间和风险的物流和程序,同时保持安全操作。需要在一次运行中穿过多个间隔,以补充单行程多区FRAC-PACK系统,其中所有井下封装机,屏幕和服务工具一次运行,并且所有区域都在一次行程中刺激。与长枪支的所有间隔穿孔,然后在单个跳闸中的多个区域的FRAC包装多个区域可节省大规模的钻机时间,而执行每个穿孔区域的多次跳闸的传统堆叠的FRAC包装完井相比。每月成千上万的穿孔工作在全世界成功进行。然而,有少数工作岗位,通常是高压深水井,其中枪休克是真实而重大的风险。当在深水高压井中规划穿孔工作时,工程师努力最大限度地减少由于孔枪口负荷(例如弯曲管道和未设置的包装机)和潜在的捕鱼工作导致的设备损坏的风险。对于级联和奇努克,使用预测完成流体中的压力波以及所有井组件的相关结构负载来评估峰值枪声载荷。快速量压力数据显示,当输入储存器响应数据接近实际现场数据时,预测的井筒压力瞬变在幅度和时间上都足够精确。我们详细讨论了用于装载和运输枪支,建造BHA的物流和程序,并在井中运行枪支。动员超过700磅爆炸物的物流需要广泛的计划,以尽量减少时间和成本。最小化每个枪连接所需的时间至最小化以最小化钻机时间,并且采用了几种方法。本文概述的物流和程序导致钻机时间超过67%,以便在墨西哥湾的日期执行最大的深水高压穿孔工作。

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