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首页> 外文期刊>SPE Drilling & Completion >The Cement-to-Formation Interface in Zonal Isolation
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The Cement-to-Formation Interface in Zonal Isolation

机译:区域隔离中的水泥-地层界面

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Maintaining zonal isolation for the lifetime of oil and gas wells is critical. Leakage behind casing can reduce the cost effectiveness of the well and cause health and safety risks from pressure buildup and contaminated aquifers. During the completion and production phases of the well, temperature and pressure variations can cause stresses at the cement-to-formation interface. The ability of the casing-cement system to maintain a seal at the cement-to-formation interface depends on the condition of the formation surface before slurry placement. The condition of shale will depend upon the nature of the drilling fluid used, whereas the condition of a permeable rock will depend upon the presence and nature of the filter-cake deposited during drilling and circulation. In this paper, we present an improved understanding of chemical interactions at the cement-to-formation interface and the factors that determine bond strength and the position of the plane of failure. For permeable formations, the role of the mud filter cake for different mud types is explored. For nonpermeable formations, the presence and effect of mud treatment are also examined. The extent and depth to which chemical alteration of the mudcake occurs when in contact with cement is determined together with measurements of the yield stress and water-content profile of the altered mudcake. The effect on bond strength of exposing swelling and nonswelling shales to inhibitive drilling fluids is presented. Laboratory-scale test equipment and a small-scale wellbore simulator, developed for tests under realistic field conditions, are described. A flexible (i.e., lower Young's modulus) cement plays a role in bonding and is demonstrated by the simulator tests. This improved understanding enables us to confirm the key issues at the cement-to-formation interface and propose some solutions for effective zonal isolation.
机译:在油气井的使用寿命中保持区域隔离至关重要。套管后的泄漏会降低油井的成本效益,并因压力升高和含水层被污染而造成健康和安全风险。在完井和生产阶段,温度和压力的变化会在水泥与地层的界面处产生应力。套管-水泥系统在水泥与地层界面处保持密封的能力取决于放置浆液之前地层表面的状况。页岩的状况将取决于所用钻井液的性质,而渗透性岩石的状况将取决于在钻井和循环期间沉积的滤饼的存在和性质。在本文中,我们对水泥与地层界面的化学相互作用以及决定粘结强度和破坏面位置的因素有了更好的理解。对于渗透性地层,探讨了泥浆滤饼对不同类型泥浆的作用。对于非渗透性地层,还检查了泥浆处理的存在和效果。确定了与水泥接触时泥饼发生化学变化的程度和深度,并测量了变形泥饼的屈服应力和含水量。提出了将膨胀页岩和非膨胀页岩暴露于抑制性钻井液对粘结强度的影响。描述了为在现实的野外条件下进行测试而开发的实验室规模的测试设备和小型井眼模拟器。挠性(即较低的杨氏模量)水泥在粘结中发挥作用,并且通过模拟器测试证明。更好的理解使我们能够确定水泥-地层界面的关键问题,并提出有效地带隔离的一些解决方案。

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