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A simplified analytical method to estimate the resistance of plane lock gates impacted by river barges

机译:一种简化的分析方法来估算受河驳船影响的平面闸门的阻力

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This paper presents a simplified analytical method to evaluate the resistance of a single plating lock gate impacted by a river barge. The approach is based on the assumption that the gate behavior may be divided into two successive phases. At the beginning of the collision, local crushing of some structural elements occurs concomitantly with small overall elastic motion of the entire gate. Then, when the penetration of the barge into the gate becomes important, a global plastic mechanism develops over the entire structure. In addition to the membrane and bending deformations occurring classically in such collisions, the particular flat shape of the striking barge bow leads to shear deformations near the gate edges. For all these deformation modes, closed-form expressions of the gate resistance are derived for both local and global deformation phases by applying the upper-bound method. These analytical developments are then validated through comparisons with numerical solutions obtained from non-linear finite-element simulations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种简化的分析方法,用于评估受河驳船冲击的单个电镀锁闸的电阻。该方法基于栅极行为可分为两个连续阶段的假设。在碰撞开始时,伴随着整个闸门的较小的整体弹性运动,伴随着某些结构元件的局部挤压发生。然后,当驳船穿入门变得很重要时,整个结构就会发展出整体塑性机制。除了典型地在这种碰撞中发生的膜变形和弯曲变形之外,撞击式驳船弓的特殊平面形状还导致闸门边缘附近的剪切变形。对于所有这些变形模式,通过应用上限方法,可以导出局部和整体变形阶段的栅极电阻的闭合形式。然后,通过与从非线性有限元模拟获得的数值解进行比较,来验证这些分析方法的发展。 (C)2015 Elsevier Ltd.保留所有权利。

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