废弃玻璃粉对固井水泥石高温力学性能的影响任务书

 2021-10-20 19:22:42

1. 毕业设计(论文)的内容和要求

本课题将设计一种可用于超深地层固井的耐高温水泥浆体系。

通过向G级油井中加入废弃玻璃粉等富含SiO2的火山灰活性材料,抑制高温下G级油井水泥石强度衰退。

同时将水泥石在两种温度下养护,进一步研究不同环境、养护龄期等参数对水泥石强度的影响,进而为耐高温油井水泥浆配方的应用设计提供指导,最后把整个研究内容写成毕业论文。

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2. 参考文献

根据毕业要求指点10.3,毕设期间要进行研究现状调查与总结,要求在开题报告及毕业设计(论文)中涉及的英文文献不少于20篇,其中近5年不少于8篇,英文文献不少于5篇。

以下是与本课题相关的部分文献列表:(提供适当参考文献,学生自己按需补充)[1] 俞嘉敏, 李明, 靳建洲, 于永金, 刘萌. 固井水泥石增韧材料的研究进展[J]. 硅酸盐通报, 2017, 36(09):3013-3019.[2] Ge, Z., Yao, X., Wang, X. J., Zhang, W. , Yang, T. Thermal performance and microstructure of oil well cement paste containing subsphaeroidal konilite flour in HTHP conditions[J]. Construction and Building Materials, 2018, 172:787-794.[3] Dhirendra Patel,R.P. Tiwari,R. Shrivastava,R.K. Yadav. Effective utilization of waste glass powder as the substitution of cement in making paste and mortar[J]. Construction and Building Materials,2019,199.[4] 王景建, 冯克满, 许前富, 薛雷, 朱江林. 高温下加砂G级油井水泥强度发展规律研究[J]. 长江大学学报(自然科学版), 2011, 8(03):52-54.[5] Zhiyong Chen,Yinlong Wang,Sen Liao,Yingheng Huang. Grinding kinetics of waste glass powder and its composite effect as pozzolanic admixture in cement concrete[J]. Construction and Building Materials,2020,239.[6] 姚晓, 葛荘, 汪晓静, 周仕明, 解志益, 何青水. 加砂油井水泥石高温力学性能衰退机制研究进展[J]. 石油钻探技术, 2018, 46(01):17-23.[7] 张晨曦,陈四利,师莹琨,苏悦琦.掺入废弃玻璃粉的水泥土力学性能的研究[J].硅酸盐通报,2019,38(06):1912-1917.[8] Ulm, F, J., James, S. The scratch test for strength and fracture toughness determination of oil well cements cured at high temperature and pressure[J]. Cement and Concrete Research, 2011, 41:942-946.[9] Pernites, R. B. , Santra, A. K. Portland cement solutions for ultra-high temperature wellbore applications[J]. Cement and Concrete Composites, 2016, 72:89-103.[10] Letelier Viviana,Henrquez-Jara Bastin I,Manosalva Miguel,Moriconi Giacomo. Combined use of waste concrete and glass as a replacement for mortar raw materials.[J]. Waste management (New York, N.Y.),2019,94.[11] Jiang Yi,Ling Tung-Chai,Mo Kim Hung,Shi Caijun. A critical review of waste glass powder - Multiple roles of utilization in cement-based materials and construction products.[J]. Journal of environmental management,2019,242.[12] Krakowiak, K. J., Thomas, J. J., James, S., Abuhaikal, M. , Ulm, F. J. Development of silica-enriched cement-based materials with improved aging resistance for application in high-temperature environments[J]. Cement and Concrete Research, 2018, 105:91-110.[13] 代奎, 孙超, 张景富, 佟卉, 姜涛. 高温下G级油井水泥强度的衰退及合理硅砂加量[J]. 大庆石油学院学报, 2004(05):98-100 110.[14] 金大智,刘光焰,高鹏飞.高温养护对玻璃粉复合胶凝材料性能的影响[J].科学技术与工程,2017,17(31):153-157.[15] 张苹,艾昕,张鹏,魏国.废弃玻璃粉对水泥砂浆力学性能的影响[J].材料与冶金学报,2017,16(01):73-78.[16] 丁士东, 陶谦, 马兰荣. 中国石化固井技术进展及发展方向[J]. 石油钻探技术, 2019, 47(03):41-49.[17] V. V. Shevchenko,G. N. Kotsai. Effect of temperature on leaching alkali metal ions from waste glass powder used as an additive to portland cement[J]. Glass Physics and Chemistry,2017,43(5).[18] 汤婉,王淑,刘数华.废弃玻璃粉末在超高性能水泥基材料中的应用[J].粉煤灰,2015,27(01):18-22.

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