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Operating Water Distribution Networks during Water Shortage Conditions Using Hedging and Intermittent Water Supply Concepts

机译:利用对冲和间歇供水概念在缺水情况下运行供水网络

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摘要

Population increase and requirements as well as water resource limitations reveal the necessity for the optimal operation of water distribution networks (WDNs), especially during shortage events. Because WDNs directly affect lifestyles, operational plans that take into account abnormal conditions are necessary. Under such circumstances, some possible solutions, such as transferring water from other basins or using recycled waters, may be inapplicable or insufficient, as continuous operation of WDNs would not be possible anymore. This paper proposes hedging or intermittent water supply as a contrasting way against a water shortage juncture. In this method of operation and in a specific time span during the operational period, the amount of water supplied to each consumer could be different even if their demands are equal. Thus, the selection of a policy that guarantees equity in supplying consumers' demands has to be considered. In addition, supplying demands with sufficient pressure would promote consumers' satisfaction. Hence, this method of operation needs a planning methodology that takes into account equity, satisfaction, available water, consumption fluctuations, and other social constraints besides hydraulic parameters influencing the behavior of WDNs and the interaction between them. The quantification of the aforementioned parameters and constraints requires mathematical models that simulate the behavior of networks and optimize the mentioned goals. In this paper, the operation of two networks is examined. The honey-bee mating optimization (HBMO) algorithm is used as the optimization tool linked to EPANET 2, which is the hydraulic simulator of the networks. To compare various methods of facing water shortage, WDN performance criteria are also calculated. Results show that a 100% resiliency criterion for hedging and intermittent water supply is 25-50% more favorable than other methods. In addition, a nodal resiliency criterion of water allocated under various operational methods and irrespective of initial storage volume of the reservoir show the superiority of intermittent water supply compared with other approaches, indicating the efficient management of available water allocated in the operational period.
机译:人口的增长和需求以及水资源的局限性揭示了配水网(WDN)最佳运行的必要性,尤其是在短缺事件期间。由于WDN直接影响生活方式,因此必须考虑到异常情况的操作计划。在这种情况下,某些可行的解决方案(例如从其他流域转移水或使用再生水)可能不适用或不足,因为WDN不再可能继续运行。本文提出了套期保值或间歇供水的方式,以应对缺水时刻。在这种操作方法中,在操作期间的特定时间段内,即使每个用户的需求相等,供应给每个用户的水量也可能不同。因此,必须考虑选择保证公平地满足消费者需求的政策。另外,提供足够压力的需求会提高消费者的满意度。因此,这种操作方法需要一种计划方法,该方法应考虑公平性,满意度,可用水量,消耗量波动以及其他社会约束条件,除了水力参数会影响WDN的行为及其之间的相互作用。量化上述参数和约束条件需要数学模型,该数学模型可以模拟网络的行为并优化所提到的目标。本文研究了两个网络的运行情况。蜜蜂交配优化(HBMO)算法用作与EPANET 2链接的优化工具,后者是网络的水力模拟器。为了比较面对水资源短缺的各种方法,还计算了WDN性能标准。结果表明,套期保值和间歇供水的100%复原力标准比其他方法高25-50%。另外,与其他方法相比,在各种运行方法下分配的水的节点回弹准则与水库的初始储水量无关,显示了间歇供水的优势,这表明在运行期间可以有效管理分配的水。

著录项

  • 来源
  • 作者单位

    Dept. of Irrigation and Reclamation, Faculty of Agricultural Engineering and Technology, College of Agriculture and Natural Resources, Univ. of Tehran, Karaj, Tehran, Iran;

    Dept. of Irrigation and Reclamation, Faculty of Agricultural Engineering and Technology, College of Agriculture and Natural Resources, Univ. of Tehran, Karaj, Tehran, Iran;

    Dept. of Land, Air and Water Resources, Dept. of Civil and Environmental Engineering, and Dept. of Biological and Agricultural Engineering, Univ. of California, 139 Veihmeyer Hall, Univ. of California, Davis, CA 95616-8628;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Water distribution network; Water juncture; Hedging; Intermittent; Performance criteria;

    机译:供水网络;水交界处;套期保值;间歇性绩效标准;

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