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Water Availability Analysis of Multiple Source Groundwater Supply Systems in Water Stressed Urban Centers Case of Lodwar municipality,Kenya

机译:肯尼亚Lodwar Municipality水中城市中心供应系统的多源地下水供应系统的水可用性分析

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Ensuring water security to urban population in fragile environments through interlinked systems of groundwater abstraction, storage and distribution of sufficient quantity is challenging especially to urban utilities situated in arid and semi arid regions. The purpose of this research was to evaluate water delivery challenges for water utilities in fragile environment in Kenya. A systematic analysis of availability from each supply sub-components from source to consumer was carried out through water audit and network analysis by employing water flow measurement equipments and through pump performance analysis and by employing continuity equation and Bernoulli’s principle to sections of the network. Results showed that water availability within a utility in such environments is contributed by seasonal variations between wet and dry affecting quantity at source, optimal design of supply infrastructure in this case better matching of solar power with the pump, using standard pipes and on optimal operational strategies employed to reduce losses within the network. Based on these findings, we conclude that with clear understanding of each subcomponent’s contributions to entire water supply system and optimizing their design and operations, more people will be made water secure in all seasons in the fragile environments.
机译:通过对地下水抽象的相互关联系统确保水安全在脆弱的环境中,储存和分配足量的储存和分配是挑战,特别是在干旱和半干旱地区位于安德和半干旱地区的城市公用事业。本研究的目的是评估肯尼亚脆弱环境中的水公用事业的送水挑战。通过采用水流量测量设备和通过泵性能分析以及采用连续性方程和网络的原则,通过水审计和网络分析来通过水审计和网络分析来进行系统分析。通过水流测量设备和网络性能分析,并采用连续性方程和伯努利对网络的原则来进行网络分析。结果表明,在这种环境中的效用内的水可用性是由潮流和干燥影响数量之间的季节性变化,在这种情况下使用标准管道和最佳操作策略更好地匹配太阳能电力的供应基础设施。用于减少网络内的损失。基于这些调查结果,我们得出结论,通过清楚地了解每个子组件对整个供水系统的贡献,并优化其设计和运营,更多的人将在脆弱环境中的所有季节中进行水分。

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