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Volume Change of Cement Plugs: Spotlight on the Role of Boundary Conditions Using an Improved Testing Method

机译:水泥插头的体积变化:使用改进的测试方法聚焦边界条件的作用

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Expansion additives have been used in cement plugs to mitigate the potential risk of plug failure resulting from shrinkage. These additives are effective only when their amount is tailored for downhole boundary conditions,and their role should be well understood. This work discusses using an improved testing method that enhances the dependability of the volume change measurement and exhibits the impact of test boundary conditions on the shrinking and expanding behaviors of cement plugs. Boundary conditions investigated with this method include temperature,pressure,water access to the cement from the formation,and the role of mechanical constraints. Dependability is demonstrated by verifying the repeatability and reproducibility of the method at two different laboratories. Together with the noninvasive continuous volume change,supplementary measurements,such as ultrasonic compressive strength,tensile strength,and chemical composition analysis,have provided inferences about the mechanism of volume change. The new method embodies all attributes listed in API 10 TR2(1997),including a constant external stress state in all measurements and a constant pore pressure during total volume change measurement. The results of percentage volume change from this test method present an extremely small variance,highlighting its repeatability;additionally,the measurement was reproducible between laboratories. Expansion value increased with a decrease in confining pressure,and excessive expansion in the absence of an effective confining pressure produced weak samples. The absence of outside water caused cement containing the expansion aid to shrink more than its neat equivalent;such observations highlight the importance of fluid boundary on the action of expansion additives. These observations were possible because the test method can capture temporal and boundary condition effects more aptly. Thus,the improved method provides a dependable measurement for tailoring plug properties.
机译:膨胀添加剂已用于水泥塞中,以减轻收缩导致的塞故障的潜在风险。这些添加剂才有效,只有在井下边界条件量身定制的金额时,它们应该很好地理解它们的作用。该工作采用改进的测试方法讨论了增强体积变化测量的可靠性,并表现出测试边界条件对水泥塞的收缩和扩大行为的影响。采用该方法研究的边界条件包括温度,压力,从地层的水泥进入水泥,以及机械约束的作用。通过验证两种不同实验室的方法的可重复性和再现性来证明可靠性。与非侵入性连续体积变化一起,补充测量,如超声波抗压强度,拉伸强度和化学成分分析,已经提供了关于体积变化机制的推断。新方法体现了API 10 TR2(1997)中列出的所有属性,包括在总体积变化测量期间所有测量中的恒定外部应力状态和恒定的孔隙压力。从该测试方法的体积变化百分比变化结果具有极小的方差,突出了其可重复性;另外,实验室之间的测量是可重复的。膨胀值随着狭窄压力的降低而增加,并且在没有有效的限制压力产生弱样品的情况下过度扩张。没有外部水导致含有扩张助剂的水泥,以缩小其整洁的当量;这种观察结果突出了流体边界对膨胀添加剂作用的重要性。这些观察结果是可能的,因为测试方法可以更恰当地捕获时间和边界条件效应。因此,改进的方法为剪裁插头属性提供可靠的测量。

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