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Ability of Preissmann slot scheme to simulate smooth pressurisation transient in sewers.

机译:Preissmann缝隙方案能够模拟下水道中平滑的增压瞬变。

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Urban drainage networks are generally designed to operate in a free-surface flow condition. However, as a consequence of heavy rainfall events or network malfunctions, the filling of sewers (pressurisation) and network overflow may occur. Several modelling software products are commonly used to simulate floods in drainage networks, and their results are usually thought to be reliable and robust. However, no specific studies have been carried out on the behaviour of these modelling products during the pressurisation transition. Mathematical models often use the Preissmann slot concept to handle pressurisation. In this paper, on the basis of laboratory pipe tests, the reliability of such a scheme is studied by means of a popular and open-source software product: SWMM (Storm Water Management Model). Many numerical tests were carried out with SWMM, varying the spatial and time steps and the Preissmann slot width, in order to examine the performance of the modelling software over intervals of these parameters even wider than what is usual in practical applications. The comparison between simulated and experimental surges allows one to draw interesting conclusions regarding the effectiveness of software products analogous to SWMM in simulating pressurisation, as well as the choice of the parameters themselves.
机译:城市排水网络通常设计为在自由表面流动条件下运行。但是,由于暴雨事件或网络故障,可能会发生下水道充水(增压)和网络溢出的情况。几种建模软件产品通常用于模拟排水网络中的洪水,其结果通常被认为是可靠且可靠的。但是,尚未对加压转换过程中这些模型产品的行为进行具体研究。数学模型通常使用Preissmann缝隙概念来处理压力。本文在实验室管道测试的基础上,通过一种流行的开源软件产品SWMM(风暴水管理模型)研究了这种方案的可靠性。用SWMM进行了许多数值测试,改变了空间和时间步长以及Preissmann缝隙宽度,以检查在这些参数的间隔内建模软件的性能,甚至比实际应用中的常规软件还要宽。模拟和实验喘振之间的比较使人们可以得出有趣的结论,即类似于SWMMM的软件产品在模拟增压过程中的有效性,以及参数本身的选择。

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