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首页> 外文期刊>Canadian Geotechnical Journal >Three-dimensional levee and floodwall underseepage
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Three-dimensional levee and floodwall underseepage

机译:三维防洪堤和防洪墙渗流

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摘要

Levee and floodwall seepage models based on two-dimensional (2D) conditions can underpredict landside vertical hydraulic gradients and uplift pressures due to excavations and convex bends. The Sherman Island levee system is used to calibrate a three-dimensional (3D) seepage model to evaluate the effect of finite landside excavations and convex levee bends on landside seepage. The model shows that a 3D analysis is required for a landside excavation with an aspect ratio (length to width) less than 1L:1.5W. For drainage canals and ditches that parallel a levee or floodwall and are wider than 15 m, gradients at the excavation center are essentially equal to 2D vertical gradients but greater than 2D gradients near the excavation sidewalls. The Sherman Island calibrated seepage model also confirms concave bends diverge seepage and yield lower vertical gradients than 2D models. Varying the degree of levee curvature (omega = 45 degrees-100 degrees) indicates that sharper convex bends (omega = 100 degrees; axisymmetric radius, 150 m) cause vertical gradients that can be about 150% greater than 2D analyses.
机译:基于二维(2D)条件的堤坝和防洪墙渗流模型可能会由于开挖和凸弯而低估陆侧垂直水力梯度和上浮压力。谢尔曼岛堤防系统用于校准三维(3D)渗流模型,以评估有限的边坡开挖和凸堤弯对边坡渗流的影响。该模型显示,对于长宽比(长宽比)小于1L:1.5W的陆侧开挖,需要进行3D分析。对于平行于堤坝或防洪墙且宽度大于15 m的排水渠和沟渠,开挖中心处的坡度基本上等于2D垂直坡度,但大于开挖侧壁附近的2D坡度。与2D模型相比,Sherman Island校准的渗流模型还确认了凹弯弯曲处的渗流并产生了较低的垂直梯度。改变堤坝曲率的程度(ω= 45度至100度)表示较尖的凸弯(ω= 100度;轴对称半径为150 m)会导致垂直梯度,其幅度可能比2D分析大150%。

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