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Assessing the Potential for Potable Water Savings in the Residential Sector of a City: A Case Study of Joinville City

机译:评估城市居民部门的饮用水潜力:以加入维尔市为例

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摘要

The objective of this study is to evaluate the potential for potable water savings by using rainwater in the residential sector of Joinville, a city located in southern Brazil. Data on roof areas of residential buildings were obtained from the Joinville city council. By considering the roof areas and typologies of residential buildings, representative models were created. The following parameters were used to determine the rainwater tank capacity: the number of dwellers; the total daily water demand per capita; and the rainwater demand. To carry out the simulations for determining the optimal rainwater tank sizes and potential for potable water savings, the computer program Netuno was used to run 33,720 different scenarios. By considering the occurrence percentage for each representative building model (weighted average), the average potential for potable water savings by using rainwater was calculated. The average potential in the central region of Joinville was 18.5% when there is rainwater use only in toilets, and 40.8% when there is rainwater use in toilets and washing machines. The rainwater harvesting system showed a better performance for a rainwater demand equal to 20% of the total daily water demand. The results indicate the necessity to properly size rainwater tank capacities to meet water demands, thereby encouraging more people to adopt rainwater harvesting as an alternative source for non-potable water in buildings. The demand for rainwater should be carefully evaluated, especially in multi-story residential buildings, due to the low availability of roof areas.
机译:本研究的目的是通过使用位于巴西南部南部的城市的居民部门的雨水来评估饮用水的潜力。住宅建筑物屋顶地区的数据是从加入维尔市议会获得的。通过考虑住宅建筑的屋顶和类型,创造了代表模型。以下参数用于确定雨水罐容量:居民的数量;人均每日水需求;和雨水的需求。为了执行确定最佳雨水箱尺寸和饮用水潜力的模拟,计算机程序QueTuno用于运行33,720个不同的情景。通过考虑每个代表性建筑模型(加权平均值)的发生百分比,计算使用雨水节省饮用水的平均潜力。当厕所仅有雨水使用时,加入维尔中部地区的平均潜力为18.5%,当厕所和洗衣机上有雨水时,40.8%。雨水收集系统表现出更好的雨水需求性能等于每日每日水需求的20%。结果表明需要适当尺寸的雨水罐能力以满足水需求,从而鼓励更多人采用雨水收获作为建筑物中不饮用水的替代来源。由于屋顶区域的可用性低,应仔细评估对雨水的需求,特别是在多层住宅建筑中。

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