船闸廊道混凝土分层施工工艺优化及防裂分析
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Optimization and crack prevention of concrete layered construction process of ship lock gallery
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    摘要:

    针对船闸廊道混凝土采用分层工艺易开裂问题,在给定的混凝土热学参数和边界条件基础上,采用仿真软件Midas FEA模拟廊道混凝土在不同分层工艺以及通水冷却工况下内部温度场分布。结合廊道尺寸和外部约束,评估不同分层工艺以及不同冷却水管间距下混凝土开裂风险。结果表明:廊道底板、侧墙以及顶板单独浇筑开裂风险较大,而将底板和上部侧墙、顶板和下部侧墙整体浇筑,可以大幅降低混凝土开裂风险。通冷却水没有显著降低混凝土外约束应力作用下的开裂风险,在混凝土温度场满足温控要求前提下,建议取消通水冷却措施。

    Abstract:

    Aiming at the problem that the concrete in the corridor of ship lock is easy to crack when concreting in lifts is adopted,based on the given concrete thermal parameters and boundary conditions,the simulation software Midas FEA is used to simulate the distribution of the internal temperature field of the concrete in the corridor under different concreting in lifts and water-through cooling conditions. Combined with corridor size and external constraints,the risk of concrete cracking under different concreting in lifts and different spacing between cooling pipes is evaluated. The results show that the concrete cracking risk is high when the bottom plate,side wall and roof are poured separately,and the concrete cracking risk can be greatly reduced when the bottom plate and upper side wall,top plate and lower side wall are poured as a whole. Cooling water does not significantly reduce the cracking risk of concrete under external constraint stress. On the premise that the concrete temperature field meets the temperature control requirements,it is recommended to cancel the measure of cooling water.

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李 凯,王英凝,邓春林,等.船闸廊道混凝土分层施工工艺优化及防裂分析[J].水运工程,2022(11):232-239.

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  • 在线发布日期: 2022-11-08
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