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Ensemble urban flood simulation in comparison with laboratory-scale experiments: Impact of interaction models for manhole, sewer pipe, and surface flow

机译:与实验室规模的实验相结合的城市洪水模拟:沙井,下水道和地表流相互作用模型的影响

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摘要

An urban flood is an integrated phenomenon that is affected by various uncertainty sources such as input forcing, model parameters, complex geometry, and exchanges of flow among different domains in surfaces and subsurfaces. Despite considerable advances in urban flood modeling techniques, limited knowledge is currently available with regard to the impact of dynamic interaction among different flow domains on urban floods. In this paper, an ensemble method for urban flood modeling is presented to consider the parameter uncertainty of interaction models among a manhole, a sewer pipe, and surface flow. Laboratory-scale experiments on urban flood and inundation are performed under various flow conditions to investigate the parameter uncertainty of interaction models. The results show that ensemble simulation using interaction models based on weir and orifice formulas reproduces experimental data with high accuracy and detects the identifiability of model parameters. Among interaction-related parameters, the parameters of the sewer-manhole interaction show lower uncertainty than those of the sewer-surface interaction. Experimental data obtained under unsteady-state conditions are more informative than those obtained under steady-state conditions to assess the parameter uncertainty of interaction models. Although the optimal parameters vary according to the flow conditions, the difference is marginal. Simulation results also confirm the capability of the interaction models and the potential of the ensemble-based approaches to facilitate urban flood simulation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:城市洪水是一种综合现象,受各种不确定性因素的影响,例如输入强迫,模型参数,复杂的几何形状以及地表和地下不同区域之间的流量交换。尽管城市洪水建模技术取得了长足的进步,但是关于不同流域之间的动态相互作用对城市洪水的影响,目前知之甚少。本文提出了一种集成的城市洪水建模方法,以考虑人孔,下水道和地表水之间相互作用模型的参数不确定性。在各种流量条件下进行了实验室规模的城市洪水和洪水泛滥实验,以研究相互作用模型的参数不确定性。结果表明,使用基于堰和节流孔公式的相互作用模型进行的集成仿真可高精度再现实验数据,并检测模型参数的可识别性。在与相互作用有关的参数中,下水道-人孔相互作用的参数比下水道-地表相互作用的不确定性要低。在非稳态条件下获得的实验数据比在稳态条件下获得的评估交互模型参数不确定性的信息更具参考价值。尽管最佳参数根据流动条件而变化,但差异很小。仿真结果还证实了交互模型的功能以及基于集成的方法在城市洪水仿真中的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

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