Abstract
Due to the complex structure and stress distribution of dam galleries, cracks often appear during the construction, operation and maintenance periods of dams. This paper proposes a method to determine the real strength and fracture parameters of gallery concrete, considering environmental temperature and humidity. The strength and fracture tests were carried out for gallery concrete at various ages and under different curing temperature and humidity conditions. The influence of curing conditions on the mechanical properties of gallery concrete was quantitatively analyzed. The prediction equations of the strength and fracture parameters of gallery concrete under arbitrary temperature and humidity were established. Based on the measured temperature and humidity data, the real mechanical parameters of gallery concrete were predicted. The research results show that the influence of environmental conditions on mechanical parameters cannot be neglected, as this can result in a strength reduction of up to 33.81%. The proposed equations can be used to predict the mechanical parameters of gallery concrete, subject to real environmental conditions, which can help to correct a maximum deviation of 54.62% on parameters calculated using actual ages. The proposed method can provide a scientific basis for the cracking risk analysis and safety assessment of the gallery structure under actual conditions.
Funder
National Natural Science Foundation of China
Zhejiang Provincial Natural Science Foundation
Open Research Fund Program of State Key Laboratory of Hydroscience and Engineering
Subject
Building and Construction,Civil and Structural Engineering,Architecture
Reference50 articles.
1. Demonstration on intelligent dam;J. Hydroelectr. Eng.,2014
2. Research progress of the intelligent construction of dams;J. Hydraulic. Eng.,2019
3. Intelligent construction methods for the Baihetan super high arch dam;J. Tsinghua Univ. (Sci. Technol.),2021
4. Lin, P., Wei, P.C., Wang, W.H., and Huang, H.F. (2018). Cracking Risk and Overall Stability Analysis of Xulong High Arch Dam: A Case Study. Appl. Sci., 8.
5. Horizontal cracking and crack repair analysis of a super high arch dam based on fracture toughness;Eng. Fail. Anal.,2019
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