雨水收集方案在西姆拉地区的应用

R. Ganguly, A. Bansal, M. Mishra, Ashish Kumar
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引用次数: 3

摘要

雨水收集是一种创新和合适的供水替代方法,任何人都可以使用。雨水收集收集、转移和储存雨水以供以后使用。众所周知,在夏季,印度北部地区严重缺水,因此实施雨水收集将是有益的,因为它将减少对现有供水的需求,减少径流、侵蚀和地表水的污染。雨水收集系统的大小和复杂程度各不相同。所有系统都有基本组成部分,包括集水区、输送系统、储存、分配和处理。因此,我们在本文中讨论了喜马偕尔邦西姆拉地区雨水收集的前景和可能性,该地区由于人口和气候条件的增加而在夏季出现水资源短缺。我们的研究结果表明,明智地全年储存雨水,而不仅仅是夏季,可以在不造成任何重大损失的情况下储存雨水。此外,研究表明,一个家庭两个月的卫生用水需求可以通过储存一个月的雨水来满足。此外,西姆拉房屋的建筑模式(倾斜屋顶结构)已经为有效储存雨水提供了优势。无量纲设计参数可以应用于任何缺水的地方。本文还对所设计的雨水收集系统给出了一个简单的效益-成本比。
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Application of Rain Water Harvesting Scheme in Shimla Region
Rainwater harvesting is an innovative and a suitable alternative approach of water supply that can be used by anyone. Rainwater harvesting captures, diverts, and stores rainwater for later use. It is a well known fact that during summer season there is a huge scarcity of water in northern regions of India and as such implementing rainwater harvesting would be beneficial because it would reduce demand on existing water supply reduces run-off, erosion, and also contamination of surface water. A rainwater harvesting system can range in size and complexity. All systems have basics components, which include a catchment surface, conveyance system, storage, distribution, and treatment. As such, we discuss in this paper about the prospects and possibilities of rainwater harvesting in Shimla region of Himachal Pradesh, which experience water shortages in summer periods due to increase in population and also climatic conditions. The result of our study shows that judicious storing of rain water all round the year and not only summer can be stored without incurring any significant losses. Further, the study shows that the sanitation water requirements for a family can be met for two months with storage of rainwater for one single month only. Further, the construction pattern of houses in Shimla (sloped roof structures) already provides an advantage in storing rainwater efficiently. The non-dimensional design parameters can be applied for any place which experiences a scarcity of water. The paper also presents a simple benefit-cost ratio for the designed rainwater harvesting system.
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