ISSN 1671-1092 CN 33-1260/TK

大坝与安全 ›› 2025 ›› Issue (6): 84-.

• 施工技术 • 上一篇    

基于有限元分析的引水隧洞二次衬砌混凝土温度应力研究

赵恒发   

  1. 韶关市水利水电勘测设计咨询有限公司,广东 韶关,512000
  • 出版日期:2025-12-20 发布日期:2026-02-05

Study on temperature stress of secondary lining concrete of diversion tunnel based on finite ele ⁃ ment analysis

by ZHAO Hengfa   

  1. Shaoguan Water Resources and Hydropower Survey and Design Con⁃ sulting Co., Ltd.
  • Online:2025-12-20 Published:2026-02-05

摘要: 引水隧洞作为一种重要的水工建筑物,其中二次衬砌混凝土等薄壁结构开裂问题尤为突出,在高水泥水化热、环境温度变化及围岩强约束作用下,二次衬砌混凝土结构极易开裂。本研究针对泉水大坝引水隧洞二次衬砌结构形式,运用有限元方法进行计算分析,评估二次衬砌混凝土开裂风险,结合工艺优化措施,最终形成二次衬砌混凝土结构裂缝控制综合方案。结果表明,分步施工减小二次衬砌底部特征点的温度峰值,进而显著降低其开裂风险;浇筑温度升高导致温降幅度增大,加剧了混凝土开裂风险。相关研究可以为工程施工提供参考。

关键词: 引水隧洞, 二次衬砌混凝土, 温度应力

Abstract: As an important hydraulic structure, the diversion tunnel exhibits particularly prominent cracking issues in thin-walled structures such as secondary lining concrete. Under the effects of high ce ⁃ ment hydration heat, environmental temperature changes, and strong constraints from surrounding rock, the secondary lining concrete is highly susceptible to cracking. This study focuses on the secondary lin ⁃ ing structure of the water diversion tunnel of Quanshui Dam. Finite element method is used for model ⁃ ing, calculation and analysis to evaluate the risk of cracking in the secondary lining concrete. Combined with process optimization measures, a comprehensive crack control plan for the secondary lining con ⁃ crete is finally formed. The results indicate that step-by-step construction reduces the temperature peak at characteristic points at the bottom of the secondary lining, thereby significantly reducing its cracking risk; the increase in pouring temperature leads to a greater temperature drop, exacerbating the risk of concrete cracking. Relevant research can provide references for engineering construction.

Key words: diversion tunnel, secondary lining concrete, thermal stress