山西干热岩GR1井高温固井技术研究与实践
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山西省地质工程勘察院有限公司,山西 太原 030024

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P634;TE256

基金项目:

山西省级地质勘查基金项目“山西省阳高县-天镇县一带干热岩地热资源预可行性勘查”(编号:SXZDF20170820)


Research and practice of cementing slurry technology for Well GR1 in Shanxi high temperature hot dry rock
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Shanxi Geological Engineering Exploration Institute Co., Ltd., Taiyuan Shanxi 030024, China

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    摘要:

    固井质量对干热岩后期开发利用具有重要意义。针对山西大同盆地干热岩勘查井GR1井温度高、高温固井水泥浆技术体系不完善等问题,通过研究勘查区地质特征,提出了高温固井水泥浆技术体系开发思路。研究表明:干热岩高温固井水泥浆水胶比控制为0.45,优选添加剂高温降失水剂CG82L、高温缓凝剂H40L、高温稳定剂CF40L、消泡剂GX-1、硅粉及HV-PAC,形成一套适用于山西干热岩井的高温固井水泥浆技术体系。该水泥浆体系在GR1井成功应用,现场固井质量良好,研究成果为今后同类型高温固井工作提供了宝贵经验和技术支撑。

    Abstract:

    Cementing quality plays an important role in the later development and utilization of hot dry rock. In view of the problems of high temperature and the incomplete technical system of high temperature cement in hot dry rock exploration Well GR1 in Datong Basin, this paper presents the approach to the development of the high temperature cement slurry technology system through investigation of the geological characteristics of the exploration area and the cementing experience on hot dry rock wells at home and abroad. The results show that the high temperature cementing slurry system which is suitable for Shanxi high temperature dry hot rock wells can be created with the water-gel ratio of high-temperature cementing slurry for hot dry rock wells at 0.45, and the preferred additive of high temperature water loss reducer CG82L, high temperature retarder H40L, high temperature stabilizer CF40L, defoaming agent GX-1, and silicon powder and HV-PAC. The cement slurry system has been successfully applied in Shanxi high temperature hot dry rock Well GR1, and the field cementing quality was good. The research results provide valuable experience and technical support for the same type of high-temperature cementing work in the future.

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引用本文

郤一臻,赵福金,荆京,等.山西干热岩GR1井高温固井技术研究与实践[J].钻探工程,2022,49(6):42-47.
XI Yizhen, ZHAO Fujin, JING Jing, et al. Research and practice of cementing slurry technology for Well GR1 in Shanxi high temperature hot dry rock[J]. Drilling Engineering, 2022,49(6):42-47.

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  • 收稿日期:2022-01-03
  • 最后修改日期:2022-05-05
  • 录用日期:2022-06-24
  • 在线发布日期: 2022-12-05
  • 出版日期: 2022-11-10