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The methods of evaluating storage volume for single-chamber reservoir in urban catchments

机译:城市流域单室水库蓄水量评价方法

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The article presents a method of designing single-chamber rectangular detention reservoirs based on nomographs connecting the parameters and the shape of the inflow with the reservoir hydrograph (triangular, described by the power function and described by the gamma distribution) as well as the hydraulic characteristics of the accumulation chamber and the orifice. The preparation of nomographs involved using the SWMM (Storm Water Management Model) program with the application of numerical calculations' results of a differential equation for the stormwater volume balance. The performed analyses confirm a high level of similarity between the results of calculating the reservoir volume obtained by using the above mentioned program and using the developed nomographs. The examples of calculations presented in the paper confirm the application aspects of the discussed method of designing the detention reservoir. Moreover, based on the conducted analyses it was concluded that the inflow hydrograph described by the gamma distribution has the greatest impact on the reservoir's storage volume, whereas the hydrograph whose shape in the rise and recession phases is described by the power function has the smallest effect.
机译:本文提出了一种基于诺模图的单室矩形滞留油库设计方法,该法将参数和入水口形状与储层水位图(三角形,由幂函数描述,由伽马分布描述)连接起来,并具有水力特性积聚室和孔口。使用SWMM(暴雨水管理模型)程序并使用数值计算结果为雨水量平衡应用微分方程的结果,来制作诺模图。进行的分析证实了通过使用上述程序和使用发达的诺模图获得的储层体积计算结果之间的高度相似性。本文提供的计算示例证实了所讨论的滞留库设计方法的应用方面。此外,根据进行的分析得出的结论是,以伽马分布描述的入流水文图对储层的存储量影响最大,而以幂函数描述上升和衰退阶段形状的水文图影响最小。 。

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