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首页> 外文期刊>Journal of hydro-environment research >Analytical solution of dam-break flood wave propagation in a dry sloped channel with an irregular-shaped cross-section
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Analytical solution of dam-break flood wave propagation in a dry sloped channel with an irregular-shaped cross-section

机译:断面不规则形的干坡河道溃坝洪水波的解析解

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Cross-sectional channel shape is a primary factor influencing dam-break floods. However, it is difficult to analytically understand the impact of the cross-sectional shape on flood wave propagation because most of the existing analytical solutions are only applicable to channels with specific cross-sections (e.g., rectangular, parabolic and triangular cross-sections). Here, a polyline cross-section representing a realistic scenario and derivation method were suggested for analyzing dam-break floods down a dry sloping channel. With the proposed model, the flow depth, average velocity and discharge profiles after an instantaneous dam break can be presented as three dimensionless curves. The effect of bed slope on the dam break wave was evaluated. Both the flood acceleration on a downward-sloping channel and the flood retardation on an upward-sloping channel are illustrated clearly with the analytical solution in an example application. The effect of the bed slope on wave propagation becomes more prominent over time. The flow depth, average velocity and discharge at the dam site remain constant for a horizontal bed and vary with time for a sloping bed. Three-dimensional numerical simulations of the examples were performed using a large eddy simulation (LES) model along with the Volume of Fluid (VOF) approach for surface tracking. A comparison between the analytical and numerical solutions shows that the analytical model can provide the main features of dam-break floods and therefore can be used for the rapid prediction of dam-break flows. The model limitations are also presented. (C) 2016 International Association for Hydro-environment Engineering and Research, Asia Pacific Division. Published by Elsevier B.V. All rights reserved.
机译:断面河道形状是影响溃坝洪水的主要因素。然而,由于大多数现有的分析解决方案仅适用于具有特定横截面(例如,矩形,抛物线形和三角形横截面)的通道,因此难以分析地理解横截面形状对洪水波传播的影响。在此,提出了代表实际情况和推导方法的折线横截面,用于分析沿干坡道的溃坝洪水。利用提出的模型,瞬时溃坝后的水深,平均速度和流量分布可以表示为三个无量纲曲线。评估了河床坡度对溃坝波的影响。在示例应用程序中,使用解析解决方案可以清楚地说明向下倾斜通道上的洪水加速度和向上倾斜通道上的洪水延迟。随着时间的推移,床坡度对波传播的影响变得更加突出。对于水平床,坝址处的水深,平均速度和流量保持恒定,而对于倾斜床,其随时间变化。使用大型涡流模拟(LES)模型以及用于表面跟踪的流体体积(VOF)方法,对示例进行了三维数值模拟。解析解和数值解之间的比较表明,该分析模型可以提供溃坝洪水的主要特征,因此可以用于溃坝流量的快速预测。模型限制也被提出。 (C)2016年国际水环境工程与研究协会亚太分会。由Elsevier B.V.发布。保留所有权利。

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