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中深层地热井新型耐高温固井材料研制

吴景华 吕涛 谢俊革 冯海涛 魏四平

钻探工程2025,Vol.52Issue(4):61-68,8.
钻探工程2025,Vol.52Issue(4):61-68,8.DOI:10.12143/j.ztgc.2025.04.008

中深层地热井新型耐高温固井材料研制

Development of new high-temperature-resistant cementing materials for medium-deep geothermal wells

吴景华 1吕涛 1谢俊革 1冯海涛 1魏四平1

作者信息

  • 1. 长春工程学院勘查与测绘工程学院,吉林 长春 130021
  • 折叠

摘要

Abstract

Geothermal energy is a kind of clean,environmentally friendly and sustainable energy.With the proposal of"dual carbon"goals,geothermal energy is becoming an important force to achieve the goal of net-zero emissions.With the continuous development of geothermal resources,the number of high-temperature and high-pressure deep geothermal wells is increasing,and the domestic geothermal wells have reached a new depth of 5000 meters.High-temperature and high-pressure environment is easy to cause the strength decline of cementing materials,admixture failure and excessive water loss,so the performance of high-temperature cementing materials is increasingly required.Therefore,a new high-temperature cementing material with excellent slurry stability,controllable thickening time,high stone strength and environmental protection is needed.Through analyzing the mechanism of cementing material components,orthogonal test and range analysis,a kind of high-temperature(120℃)resistant cementing material suitable for medium and deep geothermal wells is developed.The test results show that,the properties of cementing material such as density,water extraction rate,stone rate,thickening time,water loss,channeling resistance,stone compressive strength and flexural strength meet the requirements of cementing engineering in middle and deep geothermal wells.

关键词

中深层地热井/固井材料/抗高温/稳定性/微观结构

Key words

medium-deep geothermal well/cementing material/high-temperature resistance/stability/microstructure

分类

石油、天然气工程

引用本文复制引用

吴景华,吕涛,谢俊革,冯海涛,魏四平..中深层地热井新型耐高温固井材料研制[J].钻探工程,2025,52(4):61-68,8.

基金项目

吉林省发改委项目"吉林省地热能开发利用产业化关键技术研究"(编号:2023C033-3) (编号:2023C033-3)

钻探工程

2096-9686

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