A viscosity-soluble type biomimetic self-healing cement slurry system

IF 4.2 3区 工程技术 Q2 ENERGY & FUELS Natural Gas Industry B Pub Date : 2023-12-01 DOI:10.1016/j.ngib.2023.11.004
Youzhi Zheng , Chaoyi She , Hongqiong Fu , Xiaoyang Guo , Yao Wang
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Abstract

With the development of cementing slurry technology, cementing self-healing has become one of the most effective technologies to prevent and treat oil and gas channeling and improve long-term sealing capacity of cement sheath. To solve the technical problem of annulus oil and gas channeling caused by the long-term sealing failure of cement sheath, this paper researches and develops a kind of viscosity-soluble type biomimetic self-healing cement slurry system from the perspective of chemical biomimetics, based on the technical idea of “prevention before blocking”. Then, the engineering performance of this biomimetic self-healing cement slurry system and the mechanical property of self-healing set cement are evaluated respectively. In addition, the mechanical recovery capacity and permeability reducing rate of the self-healing set cement conserved with methane are evaluated by creating fractures through splitting. Finally, the healing mechanisms of the self-healing cement are analyzed by means of SEM microscopic test and infrared spectrography. And the following research results are obtained. First, the set cement has excellent mechanical property. When the compressive strength decreases by 15 %, the elastic modulus of set cement decreases by 41 %, showing good toughness to play the role of “first prevention”. Second, when meeting hydrocarbon, the damaged set cement is excited to generate a kind of viscosity-soluble type gelatinous ester substance, which re-bonds the skeleton of the set cement. When the self-healing set cement is conserved with methane, its compressive strength recovery rate is up to 94.5 %, bending strength recovery rate is 58.6 %, gas log permeability drops by 99 %, and liquid log permeability drops by 100 %, so as to realize “blocking later”. In conclusion, the viscosity-soluble type biomimetic self-healing cement slurry system can effectively achieve cementing integrity and long-term sealing integrity through self-healing after the damage of cement sheath, which provides a strong technical support for preventing the production safety hazard of sustained casing pressure in oil and gas wells and is beneficial to solve the technical problem of annulus oil and gas channeling caused by long-term sealing failure of cement sheath.

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粘溶型生物仿生自愈合水泥浆体系
随着固井泥浆技术的发展,固井自愈已成为防治油气通道、提高水泥护套长期密封能力的最有效技术之一。为解决水泥护套长期密封失效导致的环空油气通道技术难题,本文从化学仿生学的角度出发,按照 "先防后堵 "的技术思路,研究开发了一种粘溶型生物仿生自修复水泥浆体系。然后,分别对该仿生自愈合水泥浆体体系的工程性能和自愈合凝结水泥的力学性能进行了评价。此外,还通过劈裂形成裂缝,评估了用甲烷保存的自愈合凝固水泥的机械恢复能力和渗透率降低率。最后,通过 SEM 显微测试和红外光谱分析了自愈合水泥的愈合机制。研究结果如下。首先,固结水泥具有优异的机械性能。当抗压强度降低 15%时,固结水泥的弹性模量降低 41%,表现出良好的韧性,起到 "第一道防线 "的作用。其次,当遇到碳氢化合物时,受损的凝结水泥会被激发生成一种粘溶型胶状酯物质,重新粘结凝结水泥的骨架。自修复凝结水泥在甲烷养护下,抗压强度恢复率高达 94.5%,抗弯强度恢复率达 58.6%,气体测井渗透率下降 99%,液体测井渗透率下降 100%,实现了 "后期封堵"。综上所述,粘溶型仿生自修复水泥浆体系通过水泥护套破损后的自修复,可有效实现固井完整性和长期密封完整性,为预防油气井套管持续承压的生产安全隐患提供了有力的技术支撑,有利于解决水泥护套长期密封失效导致环空油气通道的技术难题。
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来源期刊
Natural Gas Industry B
Natural Gas Industry B Earth and Planetary Sciences-Geology
CiteScore
5.80
自引率
6.10%
发文量
46
审稿时长
79 days
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