利用雨水收集系统解决两层住宅缺水问题

IF 0.6 Q3 MULTIDISCIPLINARY SCIENCES Pertanika Journal of Science and Technology Pub Date : 2023-10-03 DOI:10.47836/pjst.31.6.18
Muhammad Izzuddin Rosli, Sharifah Abdullah, Nur Asmaliza Mohd Noor
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引用次数: 0

摘要

雨水的利用被广泛认为是减少和缓解水资源短缺影响的可靠解决方案。近年来,雨水收集系统的研究有了显著的增加,特别是对方法和处理系统的研究。雨水收集系统可以被描述为收集和储存可以使用的雨水,而不是作为径流的废物。雨水收集系统可能会减少对公共供水的依赖。本研究旨在确定雨水收集系统在双层住宅中的适用性,从而确定合适的水箱尺寸。本研究的分析使用Tangki nahrm 2.0,并使用本地化的输入数据,如降雨量、适宜屋顶面积和屋顶径流系数。本研究结果表明,在双层住宅中安装雨水收集系统是合适的,考虑到所有有助于用水的活动,最佳水箱尺寸为3立方米。简而言之,安装雨水收集系统可以减少每月的水费,并尽量减少处理过的水的使用,从而防止未来的水资源短缺。
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Utilizing Rainwater Harvesting System for Water Scarcity at a Double-Story Residential House
The use of rainwater is widely recognized as a dependable solution to reduce and mitigate the effects of water scarcity. Research on rainwater harvesting systems has increased significantly in recent years, especially on methods and treatment systems. A rainwater harvesting system can be described as collecting and storing rainwater that can be used rather than waste as runoff. A rainwater collection system might lessen the reliance on the public water supply. This study aims to determine the suitability of a rainwater harvesting system at a double-story house, thus identifying the suitable tank size for installation. This study’s analysis used the Tangki NAHRIM 2.0 with localized input data such as rainfall, suitable roof area, and roof runoff coefficient. Findings from this study indicate that installing the rainwater harvesting system at a double-story house is suitable, and the optimum tank size is 3m3 by considering all the activities that contribute to water usage. Concisely, installing a rainwater harvesting system can reduce the monthly water bill and minimize the usage of treated water, thus preventing water scarcity in the future.
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来源期刊
Pertanika Journal of Science and Technology
Pertanika Journal of Science and Technology MULTIDISCIPLINARY SCIENCES-
CiteScore
1.50
自引率
16.70%
发文量
178
期刊介绍: Pertanika Journal of Science and Technology aims to provide a forum for high quality research related to science and engineering research. Areas relevant to the scope of the journal include: bioinformatics, bioscience, biotechnology and bio-molecular sciences, chemistry, computer science, ecology, engineering, engineering design, environmental control and management, mathematics and statistics, medicine and health sciences, nanotechnology, physics, safety and emergency management, and related fields of study.
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