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USACE SMART Gate: Structural Health Monitoring to Preserve America's Critical Infrastructure

机译:USACE SMART Gate:结构健康监控以保留美国关键基础设施

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This paper focuses on structural health monitoring of the downstream miter gates on the main channel of Lock and Dam 27 just north of St. Louis, Missouri. Miter gates are the most prolific gale type employed by the United States Army Corps of Engineers (USACE), used at more than 75% of all lock and dam sites throughout the United States. Structural health monitoring of these gates is important, because it provides a method for detecting damage, including degradation of boundary conditions, fatigue cracking, dragging of debris, or discrete occurrences of damage, such as barge impact, which may otherwise go unnoticed until the damage propagates and costly repairs become necessary. By knowing in real time the extent and location of damage, a better informed decision can be made as to whether or not the gate is in immediate need of repair. The initial Structural Monitoring and Analysis in Real Time of Lock Gates (SMART Gate) study of Lock and Dam 27 is focused on achieving several specific condition monitoring targets. The target that will be addressed in this paper is the ability to detect contact degradation between the lateral edge of the lock gate and the wall of the lock chamber. Preliminary results from finite element models show that contact degradation is a localized phenomenon, which is empirically known to occur over time. Initial field results have revealed seasonal changes in strain readings as well as non-linear strain behavior during the beginning of a chamber fill event. This paper presents initial efforts to combine these findings synergistically to detect contact degradation between the quoin and wall boundary on the downstream miter lock gates at Lock and Dam 27.
机译:本文重点研究密苏里州圣路易斯以北的Lock and Dam 27主河道下游斜接闸的结构健康监测。斜接闸门是美国陆军工程兵团(USACE)使用的最多产的烈风,在美国所有闸坝和大坝站点的75%以上使用。这些闸门的结构健康状况监视非常重要,因为它提供了一种检测损坏的方法,包括边界条件的劣化,疲劳裂纹,碎屑的拖曳或离散发生的损坏(例如驳船撞击),否则可能直到损坏为止才被发现传播,因此必须进行昂贵的维修。通过实时了解损坏的程度和位置,可以就是否立即需要维修闸门做出更明智的决定。锁和大坝27的初始实时实时闸门结构监测和分析(SMART闸门)研究的重点是实现几个特定的​​状态监测目标。本文将要解决的目标是检测锁定闸门的横向边缘与锁定室壁之间的接触退化的能力。有限元模型的初步结果表明,接触退化是一种局部现象,根据经验,这种现象会随着时间的流逝而发生。最初的现场结果表明,在腔室填充事件开始期间,应变读数以及非线性应变行为会出现季节性变化。本文提出了初步的努力,以协同方式结合这些发现,以检测在洛克和大坝27号下游斜切式闸门上的柱壁和墙边界之间的接触退化。

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