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The Computational Efficiency of 'EPANET-PDX'

机译:“ EPANET-PDX”的计算效率

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In water distribution systems (WDSs), the available flow at a demand node is dependent on the pressure at that node. When a network is lacking in pressure, not all consumer demands will be met in full. In this context, the assumption that all demands are fully satisfied regardless of the pressure in the system becomes unreasonable and represents the main limitation of the conventional demand driven analysis (DDA) approach to WDS modelling. A realistic depiction of the network performance can only be attained by considering demands to be pressure dependent. This paper presents an extension of the renowned DDA based hydraulic simulator EPANET 2 to incorporate pressure-dependent demands. This extension is termed "EPANET-PDX" (pressure-dependent extension) herein. Excellent modelling performance was achieved for analysing both normal and pressure deficient conditions of the WDSs. Detailed computational efficiency results of EPANET-PDX with reference to EPANET 2 are presented and discussed. It is demonstrated that the computational time and iterations required by both models were very similar in most of the test cases considered.
机译:在水分配系统(WDS)中,需求节点处的可用流量取决于该节点处的压力。当网络缺乏压力时,并不是所有的消费者需求都能得到完全满足。在这种情况下,无论系统中的压力如何,所有需求都得到完全满足的假设变得不合理,并代表了传统需求驱动分析(DDA)方法在WDS建模中的主要局限性。网络性能的真实描述只能通过考虑压力相关需求来实现。本文介绍了著名的基于DDA的液压仿真器EPANET 2的扩展,以结合压力相关的需求。该扩展在本文中被称为“ EPANET-PDX”(压力相关的扩展)。在分析WDS的正常和压力不足状况时均获得了出色的建模性能。提出并讨论了EPANET-PDX参考EPANET 2的详细计算效率结果。结果表明,在考虑的大多数测试案例中,两个模型所需的计算时间和迭代非常相似。

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