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首页> 外文期刊>Journal of the American Water Resources Association >SUSTAINABLE RAINWATER CATCHMENT SYSTEMS FOR MICRONESIAN ATOLL COMMUNITIES
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SUSTAINABLE RAINWATER CATCHMENT SYSTEMS FOR MICRONESIAN ATOLL COMMUNITIES

机译:密克罗尼西亚环礁社区的可持续雨水集水系统

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Atoll island communities rely on rainwater catchment systems (RWCS) as a primary method of storing freshwater. However, stored freshwater can be depleted during times of drought, requiring importation of water to sustain community living. To maintain adequate water supply under future climatic conditions, the functioning of RWCS for atoll communities must be analyzed and optimal designs must be adopted. In this study, a quantitative analysis of stored daily water volumes is provided for atoll islands within the Federated States of Micronesia (FSM), with Nikahlap Island, Pakein Atoll, and a generic island in western FSM used as representative cases. Using a daily water balance model for the RWCS, baseline conditions are simulated for the 1997-1999 time period, during which an intense El Nino-induced drought occurred, and a sensitivity analysis is performed to quantify the influence of RWCS features on water system outputs, whereupon an optimal RWCS design using existing infrastructure is analyzed. Results indicate the strong influence of catchment area, system efficiency, and storage capacity on water volumes and the depletion of water during dry seasons and drought periods using current RWCS infrastructure. Adequate storage can be maintained during a major drought if unused RWCS features are employed and if minimal rationing is adopted. Study results provide water resource managers and government officials with valuable data for consideration in water security measures.
机译:环礁岛社区依靠雨水收集系统(RWCS)作为储存淡水的主要方法。然而,在干旱时期,储存的淡水可能会枯竭,需要进口水以维持社区生活。为了在未来的气候条件下保持充足的水供应,必须分析RWCS对环礁社区的功能,并且必须采用最佳设计。在这项研究中,对密克罗尼西亚联邦(FSM)内的环礁岛提供了每日储存水量的定量分析,以尼希拉普岛,帕基因环礁和FSM西部的一个普通岛为代表。使用RWCS的每日水平衡模型,模拟了1997-1999年期间的基线条件,在此期间发生了厄尔尼诺现象引起的强烈干旱,并进行了敏感性分析以量化RWCS功能对水系统输出的影响,然后分析使用现有基础架构的最佳RWCS设计。结果表明,使用当前的RWCS基础设施,集水区,系统效率和存储容量对水量以及干旱季节和干旱时期的水枯竭有很大影响。如果使用了未使用的RWCS功能并且采用了最小限度的配给,则在大干旱期间可以保持足够的存储。研究结果为水资源管理者和政府官员提供了宝贵的数据,供水安全措施中考虑。

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