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An Efficient and Structured Procedure to Develop Conceptual Catchment and Sewer Models from Their Detailed Counterparts

机译:一种高效且结构化的程序,可以从他们的详细的同行开发概念性集水和下水道模型

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摘要

Modelling flow rates in catchments and sewers with a conceptual, also known as hydrological, approach is widely applied if fast simulations are important. In cases where a detailed hydrodynamic model exists, it is common to start conceptualizing from this detailed counterpart. Unfortunately, no generalized procedure exists, which is surprising as this can be a complex and time-consuming task. This research work proposes a procedure that is validated with two independent combined sewer case studies. The conceptual models provide the targeted results with respect to representation of the flow rates and reduction in the computational time. As the desired performance could be reached for different levels of model aggregation, it is concluded that the conceptual model can be tailored to the points where accurate flow rates need to be predicted. Furthermore, the comparison of the conceptual model results with flow measurements highlights the importance of analyzing and eventually compensating for the limitations of the detailed model.
机译:如果快速仿真很重要,则在概念性的集水区和下水道中建模流动率,也称为水文,方法是广泛应用的。在存在详细流体动力学模型的情况下,通常从该详细的对应物开始概念化。不幸的是,没有存在一般性的程序,这令人惊讶,因为这可能是一个复杂且耗时的任务。该研究工作提出了一种用两个独立的组合下水道研究验证的程序。概念模型为目标结果相对于流速的表示和计算时间的减少提供。由于可以达到所需的性能以获得不同层面的模型聚集,因此得出结论,概念模型可以针对需要预测准确的流速的点定制。此外,通过流量测量的概念模型结果的比较突出了分析和最终补偿详细模型的限制的重要性。

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