Performance of a Rainwater Harvesting Tank Under Under Varying Non-Potable Demand: Case Study in Kubang Semang, Penang

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY Jurnal Kejuruteraan Pub Date : 2023-11-30 DOI:10.17576/jkukm-2023-35(6)-21
Nurhidayati Mat Daud, Nur Fikriah Daud, Amalina Amirah Abu Bakar, Noraziyan Abd Aziz, S. Badrealam, Zuraisah Dollah
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Abstract

Rapid development and climate change has endangered the availability of water resources worldwide. This study look into the potential of the applying a rainwater harvesting system (RWHS) for non- potable water usage in a doublestorey residential terrace house using Tangki NAHRIM 2.0 (TN2.0). TN2.0 is a web application that adopt the yield-after-spillage (YAS) convention to identify the optimum rainwater tank size. It is found that for a house of size 86.86 m2, the optimum tank size is 2 m3 with water-saving and storage efficiency values of 51% and 63.2% respectively. Additionally, the performance of the optimum tank size of 2 m3 was further examined under different water demand. It was found that a 2 m3 tank was still able to save water up to 42.1% for a family of 10 persons. Meanwhile, the storage efficiency shows a little increment from 63.2% to 67.8%.
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雨水收集池在不同非饮用水需求下的性能:槟城古邦三望案例研究
快速发展和气候变化已危及全球水资源的可用性。本研究利用 Tangki NAHRIM 2.0(TN2.0)研究了雨水收集系统(RWHS)在双层排屋非饮用水使用方面的应用潜力。TN2.0 是一个网络应用程序,采用溢出后产量(YAS)惯例来确定最佳雨水箱尺寸。研究发现,对于面积为 86.86 平方米的房屋,最佳水箱尺寸为 2 立方米,节水率和储存效率值分别为 51% 和 63.2%。此外,在不同的用水需求下,对 2 立方米最佳水箱尺寸的性能进行了进一步研究。结果发现,对于一个 10 口人的家庭来说,2 立方米的水箱仍能节水 42.1%。同时,储水效率略有提高,从 63.2% 提高到 67.8%。
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Jurnal Kejuruteraan
Jurnal Kejuruteraan ENGINEERING, MULTIDISCIPLINARY-
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审稿时长
24 weeks
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