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Comparative analysis of approaches to modelling water distribution networks

机译:配水网络建模方法的比较分析

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Models for water distribution networks have become indispensable tools for understanding System behaviour by simulating pressures and flows at different locations and times in the networks. This helps inform actions that should be taken in order to improve network Performance. The rationale behind tra-ditional modelling of water networks uses a simplifying assumption that pressures in the network are a function of demand, so that it is demand that drives network Performance. This demand-driven approach yields good results when pressures in the network are generally sufficient, but exhibits profound weaknesses as it produces unreliable results when network pressures are low. It therefore appears that if the network to be modelled has low pressures, then rather than employing the aforementioned demand-driven approach, the pressure-/head-driven approach should be used. In demand-driven analysis, the higher the outflow the lower the pressure while in head-driven analysis, the higher the pressure, the higher the outflow. The key difference and advantage of the head-driven approach is observed when a more realistic network model is analysed. This paper uses a real-world network to clarify the difference between the demand-driven and head-driven approach, and highlights the superiority of the latter during low-pressure conditions.
机译:通过模拟网络中不同位置和时间的压力和流量,配水管网模型已成为了解系统行为的必不可少的工具。这有助于告知应采取的措施,以提高网络性能。对水网络进行传统建模的基本原理是使用简化的假设,即网络压力是需求的函数,因此需求是驱动网络性能的关键。当网络中的压力通常足够时,这种由需求驱动的方法会产生良好的结果,但是当网络压力较低时,它会产生不可靠的结果,因此会表现出明显的弱点。因此,看来,如果要建模的网络具有较低的压力,则应该采用压力/压头驱动的方法,而不是采用上述的需求驱动方法。在需求驱动的分析中,流出量越高,压力越低;而在水头驱动的分析中,压力越高,流出量越大。当分析更现实的网络模型时,可以观察到头驱动方法的主要区别和优势。本文使用一个真实世界的网络来阐明需求驱动方法和头部驱动方法之间的区别,并强调了后者在低压条件下的优势。

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