首页> 外文期刊>River Research and Applications >HYDRAULIC INTERACTION BETWEEN ROCK CROSS VANE STREAM RESTORATION STRUCTURES AND A BRIDGE CROSSING
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HYDRAULIC INTERACTION BETWEEN ROCK CROSS VANE STREAM RESTORATION STRUCTURES AND A BRIDGE CROSSING

机译:岩体横断面恢复结构与桥梁穿越的水力相互作用

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摘要

The performance of a stream restoration project that incorporates a bridge crossing is evaluated within a 3-year monitoring period. A goal of the project was to alleviate and prevent future sediment aggradation within the waterway of a low-clearance bridge crossing. The stream restoration project included two rock cross vanes and stepped riprap and vegetation bank stabilization. Monitoring of the project involved the collection of channel survey data, pebble counts, and general observations of instream structure condition and sediment movement. The evaluated performance of the restoration structures is related to the general hydrologic conditions, the historical changes in the watershed and channel, and the hydraulic conditions created by the low-clearance bridge crossing. Backwater effects created by the bridge crossing are found to be a substantial cause of the failure of the stream restoration project to meet its goals. The low-clearance bridge hydraulics are preventing a rock cross vane located upstream of the bridge from creating a scour hole in the centre of the channel; instead, aggradation is occurring in this portion of the channel. However, degradation is occurring downstream of the bridge causing the failure of the second rock cross vane and of the riprap and vegetation bank. Although the hydraulic conditions may stem from the initial design of the bridge crossing, any restoration structure should be designed according to the current site hydraulics. In addition to providing insight into the design and construction of stream restoration structures, the results have implications for the design and management of bridge crossings.
机译:在3年的监测期内评估了包含桥梁穿越的河流修复项目的性能。该项目的目标是减轻和防止将来在低净距桥梁渡口的水道内沉积物的积聚。溪流修复项目包括两个岩石交叉叶片以及阶梯式翻石和植被堤岸稳定。该项目的监测包括收集河道调查数据,卵石计数以及对河床结构状况和沉积物运动的一般观察。修复结构的性能评估与总体水文条件,流域和河道的历史变化以及低净距桥梁穿越所产生的水力条件有关。人们发现,过桥造成的回水效应是导致溪流修复项目未能实现其目标的重要原因。低间隙桥梁液压系统可防止位于桥梁上游的岩石横叶片在通道中心形成冲水孔;取而代之的是,在该部分通道中发生了凝集。然而,退化发生在桥梁的下游,导致第二个岩石交叉叶片以及翻石和植被堤的破坏。尽管水力条件可能源于桥梁的最初设计,但任何恢复结构都应根据当前现场的水力设计。除了提供对溪流恢复结构的设计和建造的见识之外,研究结果还对跨桥的设计和管理产生了影响。

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