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Full scale study of combined wave and surge overtopping of a levee with RCC strengthening system

机译:碾压混凝土加固RCC系统波浪与浪潮联合越过的全面研究

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Most earthen levee damages have occurred on the levee crest and landward-side slope after Hurricane Katrina as a result of either wave overtopping, storm surge overflow, or a combination of both. The goal of this study was to investigate the performance and develop design guidelines for crest and landward-side strengthening system-Roller compaction concrete (RCC). A full-scale experimental study on combined wave and surge overtopping of a levee armored with RCC was conducted in a two-dimensional laboratory wave/flow flume. Erosion of RCC surface was checked after each test. It was found most of the erosion occurred after the first test and, the erosion was related to initial quality of RCC surface. Flow parameters including time series of flow thickness and velocity at 5 locations on the levee crest and landward-side slope were measured. New equations were developed to estimate distribution of instantaneous discharge, distribution of individual wave volumes as well as flow parameters on landward-side slope, including mean flow thickness, RMS wave height, mean velocity, and wave front velocity for the RCC strengthened levee.
机译:卡特里娜飓风过后,大多数土堤损坏发生在堤顶和陆侧斜坡上,这是由于波浪超顶,风暴潮溢出或两者兼而有之。这项研究的目的是调查波峰和陆侧加固系统-碾压混凝土(RCC)的性能并制定设计指南。在二维实验室波浪/水流槽中,对装有RCC的堤坝的波浪和浪涌联合进行了全面的实验研究。每次测试后检查RCC表面的侵蚀。发现大部分腐蚀发生在第一次测试之后,并且腐蚀与RCC表面的初始质量有关。测量了流量参数,包括在堤顶和陆地侧坡上5个位置的流量厚度和速度的时间序列。开发了新的方程式,以估算瞬时流量的分布,单个波浪的分布以及在陆侧坡上的流量参数,包括RCC加固堤岸的平均流量厚度,RMS波高,平均速度和波前速度。

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