Electricity Usage in Water Distribution Networks

G. Kumar, B. Karney
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引用次数: 9

Abstract

The electricity usage with respect to water distribution systems is examined for the particular case of Ontario. The case is made that the integration of conservation and energy efficiency measures between the utilities would leverage investments better than isolated efforts. The similarities between water and energy production are highlighted and potential energy savings for water distribution systems are presented. Preliminary calculations of these savings yielded a 11- 27 MW power reduction over the daily cycle for leakage protection. These values were derived from the gross, yet conservative total of 57 MW, if all the leakage in hydraulic conduits was contained. Electrical load shifting (peak shaving) through active pumping for water distribution systems yielded a potential between 450 and 100 MW of freed up generation. It should be noted that the higher value of 450 is still conservative and that this could be significantly higher for the province if distributed storage was actively implemented.
供水网络的用电量
关于水分配系统的电力使用是为安大略省的特殊情况进行审查的。有人提出,公用事业公司之间的节约和能源效率措施的整合将比孤立的努力更好地利用投资。强调了水和能源生产之间的相似之处,并提出了水分配系统的潜在节能。初步计算,这些节省产生了11- 27兆瓦的电力减少超过每日周期的漏电保护。如果所有液压管道的泄漏都被控制住,这些值是由总泄漏量得出的,但保守的总泄漏量为57mw。电力负荷转移(调峰)通过主动抽水供水系统产生450至100兆瓦的潜在释放发电量。值得注意的是,450的较高值仍然是保守的,如果积极实施分布式存储,该省的这个值可能会明显更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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