加固前后三角闸门空间有限元分析
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Spatial finite element analysis of triangular gate before and after reinforcement
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    摘要:

    对闸门结构进行合理的防撞加固,可有效降低碰撞风险,保障船闸安全运行。为研究其防撞效果,以某船闸三角闸门为研究对象,运用有限元软件 ANSYS,构建加固前、加固后(直线形防撞板)、加固后(折线形防撞板)3 种模型。综合考虑开关门状态、正反向水位及不同撞击点位置等因素,构建17种工况,对比分析不同工况下主要构件的应力、变形以及枢座、启闭杆处的支座反力。结果表明,在不考虑船舶撞击力时,加固后正向水位下闸门各构件最大应力均有所降低,但在反向水位时,面板、主横梁最大应力约增加30%;当船舶撞击立柱和中直臂附近时,设置直线形防撞板的闸门构件最大应力较折线形防撞板降低30%~40%,最大变形减小约50%,直线形防撞板的防撞性能更优。

    Abstract:

    Reasonable anti-collision reinforcement of the gate structure can effectively reduce collision risks and ensure the safe operation of the ship lock.To study its collision avoidance effect,taking the triangular gate of a ship lock as the research object,using the finite element software ANSYS,three kinds of models are built:before reinforcement,after reinforcement (straight-line anti-collision plate) and after reinforcement (broken-line anti-collision plate).Considering the open and closed status,forward and reverse water levels and different impact point positions,17 working conditions are constructed.The stress and deformation of the main components and the support reaction at the pivot seat and hoist rod under different working conditions are compared and analyzed.The results show that,when the ship impact force is not considered,the maximum stress of each component of the gate after reinforcement is reduced under the forward water level,but the maximum stress of the panel and main beam increases by about 30% under the reverse water level.Under the impact force of the ship,when the ship hits the column and the middle straight arm,the maximum stress of the gate component with the straight-line anti-collision plate is 30%-40% lower than that of the broken-line anti-collision plate,and the maximum deformation is reduced by about 50%.The anti-collision performance of the straight-line anti-collision plate is better.

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迟朝娜.加固前后三角闸门空间有限元分析[J].水运工程,2025(12):137-145.

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  • 在线发布日期: 2025-12-19
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