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带支撑梁的船闸闸室裂缝成因分析
引用本文:张润德,董家领,方朝阳,黎锦钊. 带支撑梁的船闸闸室裂缝成因分析[J]. 水运工程, 2020, 0(3): 110-114
作者姓名:张润德  董家领  方朝阳  黎锦钊
作者单位:广东省源天工程有限公司,广东 广州 511340,浙江广川工程咨询有限公司,浙江 杭州 310020,武汉大学 水资源与水电工程科学国家重点实验室,湖北 武汉 430072,广东省源天工程有限公司,广东 广州 511340
基金项目:湖北省水利重点科研项目(HBSLKY201726)
摘    要:针对某船闸闸室施工期在支撑梁上部出现表面裂缝的问题,基于有限元原理,分析闸室表面裂缝的成因及分布规律,并提出防止表面裂缝产生的温控措施.分析结果表明:早期在支撑梁上部出现表面裂缝主要是因为内外温差以及支撑梁对新浇筑混凝土的约束作用;在控制浇筑温度的基础上,采取表面保温和内部水管冷却相结合的温控措施,可以将表面点的抗裂安全系数提高至1. 40.该方案在后续施工应用后未出现表面裂缝,达到了良好的防裂效果.

关 键 词:船闸闸室  支撑梁  温度应力  表面裂缝  表面保温

Causes of crack in ship lock chamber with support beam
ZHANG Run-de,DONG Jia-ling,FANG Chao-yang and LI Jin-zhao. Causes of crack in ship lock chamber with support beam[J]. Port & Waterway Engineering, 2020, 0(3): 110-114
Authors:ZHANG Run-de  DONG Jia-ling  FANG Chao-yang  LI Jin-zhao
Affiliation:Guangdong Yuantian Engineering Co.,Ltd.,Guangzhou 511340,China,Zhejiang Guangchuan Engineering Consulting Co.,Ltd.,Hangzhou 310020,China,State Key Laboratory of Water Resources and Hydropower Engineering Science,Wuhan University,Wuhan 430072,China and Guangdong Yuantian Engineering Co.,Ltd.,Guangzhou 511340,China
Abstract:Aiming at the problem of surface cracks generated in the upper part of the support beam during construction of a ship lock chamber,we analyze the causes and distribution of surface cracks of the chamber based on the finite element principle,and put forward the temperature control measures.The results show that the early surface cracks in the upper part of the support beam are mainly due to the internal-external temperature difference and the restriction effect of the support beam on the newly cast concrete;under the prerequisite of controlling the concrete casting temperature,we combine the surface heat preservation and internal water pipe cooling to control the temperature difference and the crack prevention coefficient of surface points is raised to 1.40.Applying the measure in subsequent construction,no surface cracks appear,which prove a satisfactory anti-cracking effect.
Keywords:ship lock chamber  support beam  thermal stress  surface crack  surface heat preservation
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