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Water Saving and Energy Reduction through Pressure Management in Urban Water Distribution Networks

机译:通过城市自来水管网压力管理实现节水节能

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Water shortages and climate change are worldwide issues. Reduction in water leakage in distribution networks as well as the associated energy saving and environmental impacts have recently received increased attention by scientists and water industries. Pressure management has been proposed as a cost-effective approach for reduction in water leakage. This study conducted a real-world water pressure regulation experiment to establish the pressure-leakage relationship in a district metering area (DMA) of the water distribution network in Beijing, China. Results showed that flow into the DMA was sensitive to inlet water pressure. A 5.6 m reduction in inlet pressure (from 38.8 m to 33.2 m) led to an 83 % reduction (12.1 l/s) in minimal night flow, which is a good approximator of leakage. These reductions resulted in 62,633 m~3 of water saved every year for every km pipe, as well as associated savings of 1.1 × 10~6 MJ of energy and 68 t of CO_2 equivalent greenhouse gas emissions. The results of this study provide decision makers with advice for reducing leakage in water distribution networks with associated energy and environmental benefits.
机译:水资源短缺和气候变化是世界性问题。减少分配网络中的漏水以及相关的节能和环境影响最近已受到科学家和水工业的越来越多的关注。压力管理已被提议为减少漏水的一种经济有效的方法。这项研究进行了真实的水压调节实验,以建立中国北京水分配网络的区域计量区(DMA)的压力-泄漏关系。结果表明,进入DMA的流量对进水压力敏感。入口压力降低5.6 m(从38.8 m降至33.2 m),导致最小夜间流量降低了83%(12.1 l / s),这是泄漏的良好近似值。这些减少导致每公里管道每年节省62,633 m〜3的水,并相应节省了1.1×10〜6 MJ的能源和68 t CO_2当量的温室气体排放量。这项研究的结果为决策者提供了减少水分配网络泄漏的建议,并具有相关的能源和环境效益。

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