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Experimental investigation into rockfill dam failure initiation by overtopping

机译:覆顶引发堆石坝破坏的试验研究

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Rockfill is the most abundant building material. It is often used for water retention under different contexts, such as dams, embankments or drainage systems. Climate change may cause water levels to rise in reservoirs. As rockfill structures are not able to resist strong overtopping flow, rising water levels will constitute a danger for rockfill dam stability as well as for people living nearby. This work is aimed at the development of an empirical formula that enables calculation of the critical water level of overflow at the crest from the geometrical and physical parameters of a dam. To achieve these objectives, several experimental tests on a rockfill dam model with two different impervious cores, moraine with a sand filter and an empty wooden formwork, were conducted in a hydraulic channel at the hydro-environmental laboratory at Ecole Polytechnique de Montreal. The purpose of these tests was to study the initiation of a riprap failure under the influence of different variables, such as rock size, riprap bank, downstream side slope and bed slope. Results showed linear trends between the critical water level and both the downstream side slope and bed slope. Also, a power trend was observed between the critical level and riprap grain size. A formula that gives the critical overtopping water level was developed from these results
机译:堆石料是最丰富的建筑材料。它通常用于不同环境下的保水,例如大坝,堤防或排水系统。气候变化可能导致水库水位上升。由于堆石结构无法抵抗强大的越过顶流,因此水位上升将对堆石坝和附近居民构成威胁。这项工作旨在开发一个经验公式,该公式可以根据大坝的几何和物理参数计算出波峰的临界水位。为了实现这些目标,在蒙特利尔高等理工学院水环境实验室的液压通道中,对具有两个不同的不透水岩心,具有砂滤器的冰experimental和空的木制模板的堆石坝模型进行了几次实验测试。这些测试的目的是研究在不同变量(例如岩石大小,riprap堤岸,下游侧坡度和床坡度)影响下发生riprap破坏的原因。结果表明临界水位与下游侧坡度和河床坡度之间呈线性趋势。同样,在临界水平和碎石粒度之间观察到功率趋势。根据这些结果,得出了给出临界的超越水位的公式

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