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A scale-adaptive method for urban rainwater harvesting simulation

机译:城市雨水采集模拟规模 - 自适应方法

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At a building or dwelling scale, accurate evaluation of the water savings potential from rainwater harvesting (RWH) can be achieved by simulating the performance of the RWH system using a balance equations model. At an urban scale, water savings potential is usually estimated from the balance between the annual rainfall and annual water consumption. This approach has limited accuracy since it assumes an infinite storage capacity and it disregards the variability of the ratio between the water collected and water consumed in each building. This paper presents a methodology to evaluate rainwater harvesting potential at an urban level taking into consideration buildings' characteristics and consumption pattern. The complexity of the model is balanced with the format and detail of the information available to allow fast and easy implementation with few resources. The proposed methodology is applied to the city of Lisbon, Portugal, located on the Atlantic coast of the Mediterranean climate region. The results demonstrate water savings potential ranging from 16 to 86% depending on the buildings and occupancy characteristics. The spatial variability of the rainfall in the city of Lisbon was found to be negligible for rainwater harvesting potential evaluation.
机译:在建筑物或住宅规模中,通过模拟使用平衡方程模型的RWH系统的性能,可以准确地评估来自雨水收集(RWH)的水节省电位。在城市规模,储蓄潜力通常从年降雨量和年度耗水量之间的平衡估算。这种方法的准确性有限,因为它假设无限的储存能力,并且它忽略了在每个建筑物中收集的水与消耗的水之间的比例的可变性。本文介绍了评估城市层面的雨水采伐潜力的方法,以考虑建筑物的特征和消费模式。模型的复杂性与可用信息的格式和细节平衡,以便快速轻松地实现少量资源。该拟议的方法适用于位于地中海气候区大西洋海岸的葡萄牙市。结果表明,根据建筑物和占用特征,储蓄潜力从16%到86%。雨水采伐潜在评估,发现里斯本城市降雨的空间变异性可忽略不计。

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