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首页> 外文期刊>Environmental Modelling & Software >Reliability of water supply from stormwater harvesting and managed aquifer recharge with a brackish aquifer in an urbanising catchment and changing climate
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Reliability of water supply from stormwater harvesting and managed aquifer recharge with a brackish aquifer in an urbanising catchment and changing climate

机译:在城市化集水区和变化多端的气候中,雨水收集和管理的含水层补给与咸淡含水层的供水可靠性

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摘要

Recent research shows stormwater harvesting with Managed Aquifer Recharge (MAR) and complementary treatment can deliver safe potable water supplies. To address supply reliability the "WaterCress" hydrological model was used iteratively to simulate runoff, recharge and recovery for different rainfall, catchment and aquifer conditions, and operational scenarios based on the Parafield scheme in Salisbury, South Australia. Using historical rainfall and current catchment and operating conditions, annual demand equating to 12.8% of catchment rainfall could be met with 99.5% volumetric reliability. Using projected rainfalls from a high emission climate scenario resulted in a smaller harvestable volume decline than the increase expected from urban consolidation. Freshwater storage depletion in the brackish aquifer was expected to reduce the supply by 10% with 99.5% reliability compared with zero depletion. This simple generic modelling approach was useful for estimating reliability of stormwater MAR systems to assist planning and design and provide a basis for investor confidence. (C) 2015 Elsevier Ltd. All rights reserved.
机译:最近的研究表明,采用蓄水蓄水量补给(MAR)和补充处理来收集雨水可以提供安全的饮用水。为了解决供水可靠性问题,基于南澳大利亚州索尔兹伯里的Parafield方案,反复使用“ WaterCress”水文模型模拟不同降雨,集水区和含水层条件下的径流,补给和恢复,以及运行方案。使用历史降雨以及当前的集水量和运行条件,可以满足年需求,相当于集水量降雨的12.8%,体积可靠性为99.5%。使用高排放气候情景下的预计降雨量导致的可收获量下降幅度小于城市整合所预期的增长幅度。与零耗竭相比,咸淡含水层中的淡水存储耗竭预计将减少10%的供水量,可靠性达到99.5%。这种简单的通用建模方法可用于评估雨水MAR系统的可靠性,以帮助进行规划和设计,并为投资者的信心提供基础。 (C)2015 Elsevier Ltd.保留所有权利。

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