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An Integrated Optimal Approach for Solar Powered Rural Water Distribution Systems in the Gambia

机译:冈比亚太阳能农村配水系统的综合优化方法

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摘要

In the Gambia and across sub-Saharan Africa, reliable access to clean water and electrical power is constrained. As many rural water supply systems are already built, enhanced understanding of efficiencies and optimisation is required. Here, methods of integrating estimations of power outputs from solar photovoltaic arrays into gravity-fed water distribution network modelling are investigated. The effects of powering a rural water distribution system that is replenished with groundwater pumps that use solar power are investigated, along with the effect of this on other network design decisions. The water storage tank and pipework of a rural community with an estimated 2800 people and 28 standpipes from a borehole was selected. EPANET modelling software and genetic algorithms were used to run network optimisation simulations of: water tank location, elevation and volume; pipe diameter and configuration; and optimal system design in terms of cost. Different scenarios included producing supply, demand and required water storage curves, which could have practical application for rural water distribution system design. Indicative costs for theoretical water distribution networks will be useful for decision makers and planners.
机译:在冈比亚和整个撒哈拉以南非洲,可靠的清洁水和电力供应受到限制。由于已经建立了许多农村供水系统,因此需要增强对效率和优化的理解。在这里,研究了将来自太阳能光伏阵列的功率输出估计整合到重力供水网络模型中的方法。研究了农村供水系统的供电效果,该供水系统中补充了使用太阳能的地下水泵,以及对其他网络设计决策的影响。选择了一个农村社区的储水罐和管道,该社区估计有2800人,并从一个钻孔中抽出28根竖管。 EPANET建模软件和遗传算法用于运行以下网络的优化模拟:水箱的位置,高度和容积;管道直径和配置;以及在成本方面的最佳系统设计。不同的方案包括产生供需曲线和所需的储水曲线,这些曲线可能在农村供水系统设计中有实际应用。理论水分配网络的指示性费用将对决策者和计划者有用。

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