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Relationship Between Rainfall Duration and Sewer System Performance Measures Within the Context of Uncertainty

机译:不确定性背景下降雨持续时间与下水道系统性能测量之间的关系

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摘要

Urbanization and climate change have resulted in an increase in catchment runoff, often exceeding the designed capacity of sewer systems. The decision to modernize a sewer system should be based on appropriate criteria. In engineering practice, the above is commonly achieved using a hydrodynamic model of the catchment and the simulation of various rainfall events. The article presents a methodology to analyze the effect of rainfall characteristics parametrized with intensity-duration-frequency (IDF) curves in regard to performance measures of sewerage networks (flood volume per unit impervious surface and share of overfilled manholes in the sewerage network) accounting for the model uncertainty determined via the generalized likelihood uncertainty estimation (GLUE) method. An urban catchment was modeled with the Storm Water Management Model (SWMM). Analyses showed that the model uncertainty exerts a large impact on certain measures of sewage network operation. Therefore, these measures should be analyzed in similar studies. This is very important at the stage of decision making in regard to the modernization and sustainable development of catchments. It was found that among the model parameters, the Manning roughness coefficient of sewer channels yields a key impact on the specific flood volume, while the area of impervious surfaces yields the greatest impact on the share of overflowed manholes.
机译:城市化和气候变化导致集水区径流增加,往往超过下水道系统的设计容量。对下水道系统进行现代化改造的决定应基于适当的标准。在工程实践中,通常使用集水区的水动力模型和各种降雨事件的模拟来实现上述目的。本文提出了一种方法来分析用强度-持续时间-频率 (IDF) 曲线参数化的降雨特征对污水管网性能测量的影响(每单位不透水表面的洪水量和污水管网中过满的沙井的份额),考虑通过广义似然不确定性估计 (GLUE) 方法确定的模型不确定性。使用雨水管理模型 (SWMM) 对城市集水区进行建模。分析表明,模型的不确定性对污水管网运行的某些指标有较大影响。因此,应在类似的研究中分析这些措施。这在流域现代化和可持续发展的决策阶段非常重要。结果表明,在模型参数中,下水道曼宁粗糙度系数对特定洪水量影响较大,而不透水面面积对溢流沙井比例影响最大。

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