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Analysis of storage volume and reliability of the rainwater harvesting tanks in the coastal area of Bangladesh

机译:孟加拉国沿海地区雨水收集罐的储水量和可靠性分析

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The annual average rainfall in the coastal area of Bangladesh is more than 2,400mm and rainwater harvesting (RWH) has been practiced for a long time for drinking water supply. For household RWH, the capacity of the storage tanks varies from 1,000 to 5,000 litres, which are the model-type storage tanks provided under several RWH programs of government and NGOs. The optimum storage tank volume has not been investigated considering family size and demand, roof types and rainfall. As a result, most of the households can avail water from rainwater tanks for about six months and rest of the year, they have to depend on other unreliable and distance sources. With the aim of developing a comprehensive decision support tool for a reliable RWH system, design curves for the storage volume were developed for three climatic conditions (i.e. dry, average, and wet years), available roof catchment area (10-50m(2)), rainfall loss factor and household demand (2-12 lpcd) for a typical six members family using mass curve. Moreover, a spreadsheet-based daily water balance model was developed to assess the reliability of the currently used water tanks (1,000-5,000L). The analysis showed that the currently used tanks are insufficient to meet the year-long drinking and cooking water demand. Under average and dry climatic conditions, the achievable reliability does not significantly varies with increase of catchment area and tank size; and the maximum achievable reliability is about 70%. A large quantity of water is lost as spilled water even with a tank size of 5,000L. This water can be used for other purposes if larger tanks are used to capture the excessive spilled water.
机译:孟加拉国沿海地区的年平均降雨量超过2,400毫米,并且长期以来一直采用雨水收集(RWH)来提供饮用水。对于家用RWH,储罐的容量从1,000升至5,000升不等,这是政府和非政府组织的几个RWH计划提供的模型型储罐。尚未考虑家庭大小和需求,屋顶类型和降雨情况来研究最佳储罐容量。结果,大多数家庭可以在大约六个月和一年的剩余时间内利用雨水箱中的水,他们不得不依靠其他不可靠的距离水源。为了开发可靠的RWH系统的综合决策支持工具,针对三种气候条件(即干旱,平均和湿润年),可用的屋顶集水区(10-50m(2)),开发了存储量的设计曲线。 ,使用质量曲线的典型六人家庭的降雨损失因子和家庭需求(2-12 lpcd)。此外,还开发了基于电子表格的每日水平衡模型,以评估当前使用的水箱(1,000-5,000升)的可靠性。分析表明,当前使用的水箱不足以满足一年来的饮用水和烹饪用水需求。在中等和干燥的气候条件下,可实现的可靠性不会随着集水面积和水箱尺寸的增加而显着变化。最大可达到的可靠性约为70%。即使使用5,000L的水箱,也会因溢出的水而损失大量水。如果使用较大的水箱来收集过多的溢出水,则这些水可用于其他目的。

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