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Perforation Cleanup by Means of Dynamic Underbalance: New Understanding

机译:动态欠平衡清理穿孔:新认识

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摘要

Dynamic-underbalance (DUB) perforating is a completion technique that uses a perforating system engineered to create a rapiid underbalance immediately upon formation perforation (within tens of milliseconds or faster). This techniqueproperly applied improves well deliverability by effectively cleaning the newly ereated perforation tunnels, regardless of initial static pressure conditions (overbalanced, underbalanced, or balanced). The authors are engaged in a multiyear program of perforate-and-flow laboratory experiments [along the lines of American Petroleum Institute Recommended Practice (API RP) 19B Section 4], carefully controlling and measuring wellbore transients and measuring post-shot productivities. Experiments thus far have been limited to static balanced conditions to ensure that any cleanup observed would be attributable solely to wellbore dynamics rather than to preshot static pressure conditions. Our results provide new insight into perforation-damage and -cleanup mechanisms. We observed that a dominant source of perforation damage can be the reduction in effective flowing per-foration length, and a primary mechanism of DUB cleanup is to increase this effective length. Although increasing the permeability of the crushed zone that may surround the tunnel (a conventional simplified treatment of per-foration damage and cleanup) does indeed improve the productivity of real wells, the additional processes of enlarging tunnel diameter and reducing crushed-zone thickness further improve productivity. Increasing the effective tunnel length provides yet another means of productivity gain and, under many circumstances, is the dominant beneficial effect. We present productivity predictions of various downhole scenarios to demonstrate and quantify these effects. These findings indicate that the performance differential (between DUB and non-DUB techniques) at downhole conditions can be more significant than previously recognized. Future work will explore varying initial static pressure condi-tions (underbalance, overbalance) in conjunction with shot-time wellbore pressure transients. Work is also ongoing to probe the limits of the findings reported herein, particularly the influences of formation properties (permeability, strength, and lithology) and drilling damage.
机译:动态欠平衡(DUB)射孔是一种完井技术,该射孔技术使用的射孔系统经过精心设计,可在地层射孔后立即(数十毫秒或更短时间内)产生快速的欠平衡。无论初始静压力条件如何(过平衡,欠平衡或平衡),都可以通过有效清洁新安装的射孔孔道来适当地应用该技术,从而提高油井的产能。作者参与了多年的射孔和流动实验室实验计划[沿美国石油学会推荐实践(API RP)19B第4节的规定],仔细控制和测量井眼瞬变并测量射后生产率。迄今为止,实验仅限于静态平衡条件,以确保观察到的任何清理工作都只能归因于井眼动力学,而不是归因于预爆静压力条件。我们的结果为射孔破坏和清理机制提供了新的见识。我们观察到,穿孔损坏的主要来源可能是有效流动穿孔长度的减少,而DUB清理的主要机制是增加此有效长度。尽管增加可能围绕隧道的压裂区的渗透率(传统的对穿孔破坏和清理的简化处理)的确确实提高了实井的生产率,但增加隧道直径和减小压裂区厚度的附加过程仍在进一步改善生产率。增加有效的隧道长度可提供另一种提高生产率的方法,并且在许多情况下是主要的有益效果。我们提出了各种井下情况的生产率预测,以论证和量化这些影响。这些发现表明,井下条件下的性能差异(DUB和非DUB技术之间的差异)可能比以前认识到的更为显着。未来的工作将结合喷射时间井眼压力瞬变来探索变化的初始静压力条件(欠平衡,过平衡)。探索本文报道的发现的局限性的工作也在进行中,特别是地层性质(渗透率,强度和岩性)和钻探损伤的影响。

著录项

  • 来源
    《SPE Drilling & Completion》 |2013年第1期|11-20|共10页
  • 作者

    B. Grove; J. Harvey; L. Zhan;

  • 作者单位

    Schlumberger Reservoir Completions Center (SRC) at Rosharon, Texas;

    Schlumberger's Perforating Research Department in Rosharon, Texas (SRC);

    Unconventional Gas and Tight Oil group at Shell International Exploration and Pro-duction, Houston. Previously;

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