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钙膨胀添加剂对油气井分区隔离花岗岩基土聚物性能的影响

本文研究了氧化钙作为膨胀剂对土聚物基密封材料性能的影响,并在浅层油气井中取得了成功应用。

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来源:论文 SPE 217431

土聚合物已成为油气井波特兰水泥的有前途的替代品。使用土聚合物实现有效的区域隔离可能需要控制其膨胀。本研究调查了氧化钙 (CaO) 作为膨胀剂对土聚合物基密封材料性能的影响。具体来说,我们使用等温量热法、Brunauer-Emmett-Teller 表面积分析、线性膨胀 (LE) 测试、剪切粘结强度、抗压强度和水力粘结强度 (HBS) 探索 CaO 反应性对各种材料特性的影响。

我们的结果表明,CaO 反应性是影响地质聚合物在区域隔离中的性质和性能的关键因素。较低的反应性与较长的诱导期和较低的热量释放有关,这反过来又会增加 LE。

虽然较低的反应性会降低抗压强度,但会增加剪切粘结强度。然而,反应性最低的 CaO 会因基质开裂和泄漏而导致 HBS 非常低。因此,优化 CaO 膨胀剂的反应性对于提高油气井用土聚物基密封材料的性能至关重要。本文介绍了 CaO 作为油气井浅层花岗岩基土聚物膨胀剂的成功应用。


本摘要摘自斯塔万格大学 FD Gomado、M. Khalifeh 和 A. Saasen、圣福尔德大学学院 SG Sanfelix 和 A.-L. Kjaseniksen 以及斯塔万格大学 JA Aasen 撰写的论文 SPE 217431。该论文已通过同行评审,可在 OnePetro 上的 SPE 期刊上作为开放获取获取。

原文链接/JPT
SPE News

Effect of Calcium Expansive Additives on the Performance of Granite-Based Geopolymers for Zonal Isolation in Oil and Gas Wells

This paper investigates the effect of calcium oxide as an expansive agent on the performance of geopolymer-based sealing materials, with successful application in oil and gas wells at shallow depths.

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Source: Paper SPE 217431

Geopolymers have emerged as a promising alternative to Portland cement for oil and gas wells. Achieving effective zonal isolation by use of geopolymers may require controlling their expansion. This study investigates the effect of calcium oxide (CaO) as an expansive agent on the performance of geopolymer-based sealing materials. Specifically, we explore the effect of CaO reactivity on various material properties using isothermal calorimetry, Brunauer-Emmett-Teller surface area analysis, linear expansion (LE) test, shear bond strength, compressive strength, and hydraulic bond strength (HBS).

Our results indicate that CaO reactivity is a critical factor affecting the properties and performance of geopolymers for zonal isolation. Lower reactivities are associated with longer induction periods and lower heat evolution, which in turn increase LE.

While lower reactivity decreases compressive strength, it increases shear bond strength. However, the CaO with the lowest reactivity resulted in a very low HBS because of matrix cracking and leakage. Therefore, optimizing the reactivity of CaO expansive agents is essential to enhancing the properties of geopolymer-based sealing materials for oil and gas wells. This paper shows the successful application of CaO as an expansive agent for granite-based geopolymers at shallow depths in oil and gas wells.


This abstract is taken from paper SPE 217431 by F. D. Gomado, M. Khalifeh, and A. Saasen, University of Stavanger; S. G. Sanfelix and A.-L. Kjøniksen, Østfold University College; and J. A. Aasen, University of Stavanger. The paper has been peer reviewed and is available as Open Access in SPE Journal on OnePetro.