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A simplified mathematical model for the dam-breach hydrograph for three reservoir geometries following a sudden full dam break

机译:突然全坝休息后三个水库几何形状的简化数学模型

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The prediction of dam-break water flow at dam site is essential to reduce the potential for loss of damage in the downstream floodplain. In this study, the influence of reservoir shapes (rectangular, trapezoidal and triangular wedge) on dam-break discharge hydrographs at a dam site was investigated to estimate the peak discharge and discharge hydrograph quickly. By assuming instantaneous and complete breaches to simplify the discharge process, a formula for the peak discharge and a simple analytical solution to the entire discharge hydrograph following a dam break at the dam site were generated. The discharge hydrograph at the dam site derived by the proposed mathematical model was validated through a comparison with the results calculated by the numerical simulation and other existing approaches. The outflow discharges calculated by both the mathematical and numerical model was very similar under the conditions of the three different reservoir shapes. The overall discharge hydrograph shape was mainly influenced by the length of the reservoir, while the magnitude of the outflow discharge was primarily affected by the initial water depth.
机译:在坝址的坝体中排水水流预测对于降低下游洪泛区损坏的可能性是必不可少的。在这项研究中,研究了储层形状(矩形,梯形和三角形楔子)对坝址的坝址排出水文的影响,迅速估计峰值放电和排放水流。通过假设瞬时和完全违规来简化放电过程,产生了峰值坝位于坝部位坝址后峰值放电的公式和整个排放水文的简单分析解决方案。通过与由数值模拟和其他现有方法计算的结果进行比较,通过了所提出的数学模型的坝址的放电水文。通过数学和数值模型计算的流出放电在三种不同的储层形状的条件下非常相似。整体放电水文形状主要受储层长度的影响,而流出流量的大小主要受初始水深的影响。

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