间歇供水系统水力建模方法综述

Dondu Sarisen, Vasilis Koukoravas, R. Farmani, Z. Kapelan, F. Memon
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引用次数: 5

摘要

间歇性供水(IWS)在世界范围内得到了广泛的应用,随着人口的增加和对未来水资源短缺的预测,IWS的应用似乎还会继续。现有的供水研究大多集中在连续供水(CWS)上,而对连续供水(IWS)的研究正在成为主流。水力建模是给水系统规划、设计、修复和运行过程中的有效工具。它对工程师的决策过程有重要的帮助。对IWS系统进行建模的必要性源于间歇性引起的问题的复杂性和多样性。本文回顾了最先进的IWS建模,并确定了可用方法的主要优势和局限性,并指出了潜在的研究方向。目前,既没有计算机软件,也没有实际使用的方法来模拟IWS。对于IWS的严格模拟,首先需要了解系统特性,即在压力不足条件下的用户行为,水损失以及填充和排空过程。每一个都需要进一步的关注和改进。此外,还强调了来自IWSs的真实数据的必要性。准确的建模将导致改进措施的发展,以解决由间歇性引起的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of hydraulic modelling approaches for intermittent water supply systems
Intermittent water supply (IWS) is widely used around the world, and with the increase in population and predicted future water scarcity, IWS applications seem to continue. While most of the existing studies on water supply concentrate on continuous water supply (CWS), the research focused on the IWS is now becoming mainstream. Hydraulic modelling is an effective tool for the process of planning, design, rehabilitation, and operation of water distribution systems. It helps significantly in engineers’ decision-making process. The necessity of modelling IWS systems arises from the complexity and variety of problems caused by intermittency. This paper offers a review of the state-of-the-art IWS modelling and identifies the key strengths and limitations of the available approaches, and points at potential research directions. Currently, neither computer software nor a practically used approach is available for modelling IWS. For a rigorous simulation of IWS, system characteristics first need to be understood, i.e., the user behaviour under pressure-deficient conditions, water losses, and filling and emptying processes. Each of them requires further attention and improvement. Additionally, the necessity of real data from IWSs is stressed. Accurate modelling will lead to the development of improved measures for the problems caused by intermittency.
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