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水力发电学报 ›› 2020, Vol. 39 ›› Issue (9): 111-120.doi: 10.11660/slfdxb.20200911

• • 上一篇    

高内水压力隧洞钢筋混凝土衬砌裂缝控制标准

  

  • 出版日期:2020-09-25 发布日期:2020-09-22

Study on crack control standards for reinforced concrete linings in high internal water pressure tunnels

  • Online:2020-09-25 Published:2020-09-22

摘要: 高压水作用下水工隧洞衬砌开裂难以避免,透水衬砌设计关键是确定衬砌与围岩联合承载条件下的钢筋混凝土衬砌结构受力特征和裂缝控制标准。本文基于压力隧洞衬砌裂缝起裂和扩展特点,分析了传统裂缝计算公式及以数值仿真计算方法的工程适用性,并针对衬砌的主要设计参数进行了裂缝宽度敏感性分析;通过裂缝控制标准解析、数值仿真及工程实际量测的结果对比,提出了衡量衬砌裂缝控制标准的关键依据。研究结果表明,尽管实测裂缝宽度往往大于限裂标准,但多数工程仍正常运行,现行国内外规范的裂缝控制标准过于苛刻,降低了支护结构材料的利用效率,应建立与工程实际相符合的裂缝宽度控制标准。兼顾压力隧洞的工程安全与经济效益,较合理的混凝土衬砌配筋率接近0.9%,衬砌厚度接近800 mm,裂缝宽度控制标准增加至0.35 ~ 0.5 mm。

关键词: 压力隧洞, 公式法, 数值仿真, 裂缝控制标准, 配筋率, 衬砌厚度

Abstract: It is difficult to prevent the cracking of the lining of hydraulic tunnels under high water pressure. The key to designing a permeable lining is to determine the stress characteristics and crack control standards of reinforced concrete structures under the loads jointly born by the lining and surrounding rock. Based on the characteristics of crack initiation and propagation in pressure tunnel linings, this study analyzes the engineering applicability of conventional formula calculations and numerical methods to concrete lining cracking, and examines the sensitivity of crack openings to determine the main parameters of lining design. We also compare the results of crack control standard analysis, numerical simulation, and actual measurement, and demonstrate the key to evaluating a crack control standard of the linings. The results show that most of the projects are in normal operation, even though their measured crack openings are often beyond the crack limit standard. The current global crack control standards are too strict, lowering the utilization efficiency of support structure materials. Therefore, new threshold crack opening that is consistent with the real engineering cases should be established. Considering the engineering safety and economic benefits of pressure tunnels, this study suggests that the reasonable reinforcement ratio of concrete linings should be roughly 0.9%, lining thickness roughly 800 mm, and critical crack opening 0.35-0.5 mm.

Key words: pressure tunnel, formula method, numerical simulation, threshold crack opening, reinforcement ratio, lining thickness

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