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PHYSICAL MODELING OF OVERTOPPING EROSION AND BREACH FORMATION OF COHESIVE EMBANKMENTS

机译:凝结路堤超速侵蚀与断裂形成的物理模拟

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The formation process and timing of a dam embankment breach caused by flood overtopping can dramatically impact the rate at which water is released from a reservoir and directly impacts the hazard to life and property downstream of a breached dam. Therefore, dam embankment erosion processes and the rate of breaching from overtopping events are important to both engineers and planners alike, who must predict impacts on local communities and surrounding areas affected by flooding. There is a distinct difference between the erosion processes of non-cohesive and cohesive embankments during overtopping. The USDA-ARS has conducted seven large-scale overtopping failure tests on cohesive embankments ranging in height from 1.5 to 2.3 m. The purpose of this study is to: (1) establish a better understanding of the erosion process of overtopped cohesive embankments, and (2) provide detailed data for future numerical model development, validation, calibration, and testing. Three soils were tested, two non-plastic SM silty sand materials and a CL lean clay. A four-stage breach erosion process was observed for cohesive embankments. The primary erosion processes observed and reported in this article for cohesive embankments during stages 2 and 3 were headcut migration and erosion widening. The rate of these two processes was observed to vary by several orders of magnitude and was observed to be strongly dependent on the soil material properties.
机译:由洪水超顶造成的大坝堤坝溃坝的形成过程和时间安排会极大地影响水库中水的释放速度,并直接影响对大坝下游生命和财产的危害。因此,大坝堤防侵蚀过程和超车事件造成的破坏率对于工程师和规划者来说都是重要的,他们必须预测对受洪水影响的当地社区和周边地区的影响。在覆盖过程中,非粘性路堤和粘性路堤的侵蚀过程之间存在明显差异。 USDA-ARS已对高度从1.5到2.3 m的粘性路堤进行了七次大规模的翻倒破坏测试。这项研究的目的是:(1)更好地理解顶层粘结性路堤的侵蚀过程,以及(2)为将来的数值模型开发,验证,校准和测试提供详细的数据。测试了三种土壤,两种非塑料SM粉砂材料和一种CL贫粘土。对于粘性路堤,观察到一个四阶段的破坏侵蚀过程。本文观察和报道的在第2阶段和第3阶段粘结性路堤的主要侵蚀过程是割据迁移和侵蚀扩大。观察到这两个过程的速率变化了几个数量级,并且观察到它们在很大程度上取决于土壤材料的特性。

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