农村供水系统可持续性评估

Syadzadhiya Q.Z. Nisa, Rizka Novembrianto, R. H. A. Murti, M. A. S. Jawwad
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引用次数: 0

摘要

承诺提供清洁水和适当的卫生设施是可持续发展计划(SDGs)的目标之一。每个地区的政府都需要努力为社区提供洁净水。实现清洁水的努力可以通过供水系统来实现。供水系统的可持续性指标需要满足质量、数量和连续性三个方面。本研究的目的是评估拉蒙甘地区 "苏吉奥 "供水系统的可持续性,该系统为三个村庄(即苏吉奥、勒巴卡迪和塞卡巴古斯)提供服务。从生产用水的水质分析结果来看,水质符合饮用水原水的质量标准。水量方面的计算是为了满足未来 20 年的用水需求。计算结果表明,日平均需水量为 17 升/秒,日最大需水量为 19 升/秒,而现有需水量为 15 升/秒。供水连续性是从紧急情况下的配水能力来计算的。计算结果表明,在没有电能来源的情况下,最多只能在 1 小时 13 分 48 秒内完成清洁水的分配。由此得出的结论是,"Sugio "供水系统在水量和连续性方面的可持续性仍有待提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainability Assessment of Rural Water Supply System
The commitment to provide clean water and proper sanitation is one of the goals of the Sustainable Development Programs (SDGs). The government of each region needs to strive for clean water for the community. Efforts to fulfill clean water can be realized with the Water Supply System. Water Supply System sustainability indicators need to fulfill three aspects of quality, quantity, and continuity. The aim of this research is to assess the sustainability of the ‘Sugio’ Water Supply System in Lamongan Regency which serves three villages, namely Sugio, Lebakadi, and Sekarbagus. The aspect of water quality, seen from the results of the analysis of the quality of production water, shows that it meets the quality standards as raw water for drinking water. The aspect of water quantity is calculated to meet water needs for the next 20 years. The calculations results show that the daily average debit requirement is 17 L/s and the daily maximum debit is 19 L/s, while the existing debit is 15 L/s. The aspect of water continuity is calculated from the ability to distribute water during an emergency. The calculation results show that the distribution of clean water when there is no source of electrical energy can only be carried out in a maximum of 1 hour 13 minutes 48 seconds. The conclusion obtained is that the sustainability of the ‘Sugio’ Water Supply System from the aspect of water quantity and continuity still needs to be improved.
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