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Article

Feasibility Study of Temperature Control Measures during the Construction of Large-Volume Concrete Gravity Dams in Cold Regions: A Case Study

1
State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing 100038, China
2
College of Engineering and Technology, China University of Geosciences Beijing, Beijing 100083, China
3
Heilongjiang Province Hydraulic Research Institute, Harbin 150080, China
4
Heilongjiang Province Water Resources and Hydropower Group Co., Ltd., Harbin 150023, China
*
Author to whom correspondence should be addressed.
Water 2024, 16(19), 2761; https://doi.org/10.3390/w16192761 (registering DOI)
Submission received: 5 August 2024 / Revised: 14 September 2024 / Accepted: 23 September 2024 / Published: 27 September 2024

Abstract

Effective temperature control measures are crucial for achieving temperature regulation and preventing cracking in the dam body during the construction of large-volume concrete gravity dams. Due to the low ambient temperatures in winter, it is especially important to focus on temperature control measures for concrete dam construction in cold regions. This paper employs a numerical simulation method that takes into account dam temperature control measures to simulate and predict the overall temperature and stress fields of the Guanmenzuizi Reservoir Dam, and validates these simulations with field monitoring results. This study finds that the ambient temperature significantly impacts the temperature and stress of the dam body’s concrete. The internal temperature of the dam reaches its highest value approximately 7 days after pouring, followed by periodic fluctuations, with the dam body’s temperature changes exhibiting a certain lag compared to the ambient temperature. The interior of the dam is under compression, while the upstream and downstream surfaces experience significant tensile stress. This project adopts targeted temperature control measures for the cold environmental conditions of the region, which are reasonably implemented and effectively reduce the temperature rise of the concrete during construction, achieving the temperature control objectives. This study also explores the impact of the cooling water pipe density on the dam body. The research results offer valuable references for the implementation of temperature control measures and the establishment of temperature control standards for concrete gravity dams in cold regions.
Keywords: concrete gravity dam; temperature control; construction period; numerical simulation; field monitoring concrete gravity dam; temperature control; construction period; numerical simulation; field monitoring

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MDPI and ACS Style

Lv, Z.; Yu, S.; Su, A.; Guan, R.; Jia, S.; Yin, P. Feasibility Study of Temperature Control Measures during the Construction of Large-Volume Concrete Gravity Dams in Cold Regions: A Case Study. Water 2024, 16, 2761. https://doi.org/10.3390/w16192761

AMA Style

Lv Z, Yu S, Su A, Guan R, Jia S, Yin P. Feasibility Study of Temperature Control Measures during the Construction of Large-Volume Concrete Gravity Dams in Cold Regions: A Case Study. Water. 2024; 16(19):2761. https://doi.org/10.3390/w16192761

Chicago/Turabian Style

Lv, Ziyu, Shu Yu, Anshuang Su, Rongcai Guan, Suizi Jia, and Penghai Yin. 2024. "Feasibility Study of Temperature Control Measures during the Construction of Large-Volume Concrete Gravity Dams in Cold Regions: A Case Study" Water 16, no. 19: 2761. https://doi.org/10.3390/w16192761

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