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Improving water and energy metabolism efficiency in urban water supply system through pressure stabilization by optimal operation on water tanks

机译:通过水箱的最佳运行来实现压力稳定,从而提高城市供水系统的水和能量代谢效率

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Water supply consumes 2-3% of the worldwide energy. Water distribution system, which accounts for 70% electricity consumption of water supply, is a key link of urban water and energy metabolism. The operation of the secondary water supply system (SWSS) has great influence on the pressure stability and associated energy consumption as well as water loss of urban water distribution. This research developed an approach based on the hydraulic solver EPANET and genetic algorithm (GA) to investigate the impacts of two different operation strategies, user demand regulation (UDR) and tank level regulation (TLR) of SWSS, on pressure stability and energy efficiency. The results showed that the strategy of TLR could reduce the pressure fluctuations and increase the minimal pressure of the distribution network under the same supply demand condition. Reduction of the pressure fluctuations is beneficial to the reliability and leakage control of pipe networks. Increase of the minimal pressure indicates that less energy is lost during the distribution. Therefore, the TLR strategy of SWSS can support to initiatively lower the water pressure of the pumps at the water plant outlet, thus improves the water and energy metabolism efficiency in urban water supply system. (C) 2014 Elsevier B.V. All rights reserved.
机译:供水消耗了全球能源的2-3%。供水系统的用水量占供水量的70%,是城市水和能量代谢的关键环节。二次供水系统(SWSS)的运行对压力稳定性和相关的能源消耗以及城市配水失水有很大影响。这项研究开发了一种基于液压求解器EPANET和遗传算法(GA)的方法,以研究SWSS的用户需求调节(UDR)和储罐液位调节(TLR)两种不同的操作策略对压力稳定性和能效的影响。结果表明,在相同的供需条件下,TLR策略可以减少压力波动,提高配电网的最小压力。减小压力波动有利于管网的可靠性和泄漏控制。最小压力的增加表明分配过程中损失的能量更少。因此,SWSS的TLR策略可以支持主动降低水厂出口水泵的水压,从而提高城市供水系统中的水和能量代谢效率。 (C)2014 Elsevier B.V.保留所有权利。

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