首页> 外文会议>Society of Petroleum Engineers Canadian Unconventional Resources Conference >Unique Solution to Repair Casing Failure in a HTHP Wellbore Allows for Successful Multi-Stage Stimulation Treatment in an Unconventional Reservoir
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Unique Solution to Repair Casing Failure in a HTHP Wellbore Allows for Successful Multi-Stage Stimulation Treatment in an Unconventional Reservoir

机译:在HTHP Wellbore中修复外壳故障的独特解决方案允许在非传统水库中成功的多级刺激处理

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Horizontal shale completions require multi-stage high-pressure hydraulic fracturing stimulation treatments in order to deliver commercially viable production in low permeability reservoirs. Unconventional shale plays, such as the Eagle Ford and Haynesville Shale, often can require stimulation treatments that must be implemented in high pressure and high temperature (HPHT) conditions. Typically, these wells are completed with long casing strings, and it is critical that these monobore casing strings withstand high injection pressures as well as maintain mechanical integrity during thermal contraction/expansion. So what happens when the pre-frac casing pressure integrity pressure test fails? What is the "fix" that will allow treatments to be pumped at high pressure and rate? How will frac stages be isolated during the completion? Typically, remediation techniques have included everything from casing patches and expandable casing to coiled tubing completions. Unfortunately, these solutions can have pressure limitations, and in addition, can be cost prohibitive. The authors of this paper will discuss how design of a 4-in. tie-back string with flush joint connections equal to the properties of the casing was capable of repairing a 5-1/2-in. monobore production casing that experienced extensive casing failure. The extremely small annular tolerance did not allow a conventional packer assembly or cementing for pressure isolation; thus, swellable packer technology was used to anchor the casing in place. A special flow-thru frac plug was designed so that it could be pumped through the 4-in. tie-back casing and set in the 4-1/2-in. lateral, allowing a plug-and-perf fracture completion to be performed. The stimulation treatments were pumped to completion and demonstrated 1), that the pressure isolation integrity of the casing system was satisfactory; and 2), that the flow-thru frac plugs could maintain isolation between stimulation treatments. This wellborc was in the Eagle Ford Shale. True vertical depth (TVD) was ~ 13,000 ft, bottomhole temperature (BHT) was ~325°F with a 0.95 psi/ft frac gradient, and surface pressures exceeded 10,000 psi during the stimulation treatments.
机译:水平页岩完成需要多级高压液压压裂刺激处理,以便在低渗透油藏中提供商业上可行的生产。非传统的页岩戏剧,如鹰福特和海恩斯维尔页岩,往往可能需要在高压和高温(HPHT)条件下必须实施的刺激处理。通常,这些孔以长的套管串完成,并且这些单孔壳体串承受高注射压力以及在热收缩/膨胀期间保持机械完整性至关重要。那么在FRAC前套管压力完整性压力测试发生故障时会发生什么?什么是允许在高压和速率下泵送治疗的“修复”?在完成期间如何孤立FRAC阶段?通常,修复技术已经包括从套管贴片和可扩展的壳体到盘绕管道完成的一切。不幸的是,这些解决方案可以具有压力限制,并且此外,可能是成本持久的。本文的作者将讨论如何设计4英寸。带有冲洗接头连接的连接串等于壳体的性质能够修复5-1 / 2-In。 Monobore生产套管经历了广泛的套管故障。极小的环形公差不允许传统的封隔器组件或用于压力隔离的粘合;因此,可膨胀的封隔器技术用于将壳体固定到位。设计了一种特殊的流动式FRAC插头,使其可以通过4英寸泵送。焊接套管和4-1 / 2英寸的套管。横向,允许进行插头和完善的裂缝完成。将刺激处理泵送到完井并证明1),壳体系统的压力隔离完整性令人满意;和2),流动通过FRAC插头可以保持刺激处理之间的隔离。这款Wellborc位于Eagle Ford Shale。真正的垂直深度(TVD)为约13,000英尺,井底温度(BHT)为〜325°F,具有0.95psi / ft Frac梯度,在刺激处理过程中,表面压力超过10,000psi。

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