Economic feasibility analysis of variable-speed pumps by simulating 15 multiple water distribution systems

Conrad B. Truettner, B. Barkdoll
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Abstract

The UN Sustainability Goals address measures to reduce environmental pollution. Water distribution systems (WDSs) use electric energy, which pollutes the atmosphere through, at least partly, the burning of coal. This study simulates, through modeling, variable-speed pumps (VSPs) on 15 different real WDSs on the network solver EPANET and analyzes the payback period. An algorithm is introduced here to select the optimal pump speed pattern to save the most energy while satisfying the constrain of sufficient pressure at all times and all locations. It was found that five of the 15 systems operated unsuccessfully using a VSP, due to the VSP operating at lower speeds causing a lower pressure than normal, thereby causing the pressure to become negative. Additionally, a new chart that compares the payback period, project life, and energy costs between the base case and the VSP case was developed and different regions on the chart reflect different decision criteria.
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通过对15个多配水系统的模拟,分析变速泵的经济可行性
联合国可持续发展目标涉及减少环境污染的措施。水分配系统(WDSs)使用电能,至少部分地通过燃烧煤炭污染大气。本文在网络求解器EPANET上对15种不同的实际wds上的变速泵(vsp)进行了建模仿真,并分析了投资回收期。本文介绍了一种选择最优泵速模式的算法,以最大限度地节省能源,同时满足所有时间和所有位置的足够压力约束。结果发现,在15个系统中,有5个系统使用VSP操作失败,原因是VSP以较低的速度运行,导致压力低于正常水平,从而导致压力变为负值。此外,还开发了一个新的图表,比较了基本情况和VSP情况之间的投资回收期、项目寿命和能源成本,图表上的不同区域反映了不同的决策标准。
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