Computational Fluid Dynamics Analysis of Gravitational Filter Based on Origami Concept (G-Filtro) Acted as Water Filtration Device in Water Tank

Water is the most demanding resource in the world especially in the era of the rapid growth of population and development. Therefore, delivering good quality water to consumers is important for their security of lives. Gravitational Filter Based on Origami Concept (G-Filtro) is a water filtration de...

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Main Authors: Zawawi M.H., Mustafa Al Bakri Abdullah M., Nazmi M.A., Yusairah W.N., Hassan N.H., Shahira Jupri E., Azam Afiq M., Kamaruddin M.A., Remy Rozainy Mohd Arif Zainol M., Irfan A.R.
Other Authors: 39162217600
Format: Conference Paper
Published: IOP Publishing Ltd 2023
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spelling my.uniten.dspace-253912023-05-29T16:08:52Z Computational Fluid Dynamics Analysis of Gravitational Filter Based on Origami Concept (G-Filtro) Acted as Water Filtration Device in Water Tank Zawawi M.H. Mustafa Al Bakri Abdullah M. Nazmi M.A. Yusairah W.N. Hassan N.H. Shahira Jupri E. Azam Afiq M. Kamaruddin M.A. Remy Rozainy Mohd Arif Zainol M. Irfan A.R. 39162217600 53164519100 57219023926 57204798671 57204683370 57219030395 57219022731 44361188400 57193313971 56500369900 Water is the most demanding resource in the world especially in the era of the rapid growth of population and development. Therefore, delivering good quality water to consumers is important for their security of lives. Gravitational Filter Based on Origami Concept (G-Filtro) is a water filtration device that will be placed in a water tank at the residential area before people consumed it for everyday used. The specialty of this device, it does not necessarily attach to any power source. The objective of this project is to design and develop 3D G-Filtro using 3D CAD software and CFD analysis is used to determine the efficiency of the G-Filtro by simulating and model the pressure, velocity and streamline. Based on the result, the maximum water velocity for simulation without the filter is 0.266 m/s and the maximum velocity for first and second designed filter are 0.254 m/s and 0.243 m/s respectively. From the CFD simulation, the G-Filtro can remove the contaminants in water tank efficiently. Hence, it is proven that G-Filtro can be added as a new water filtration device. � Published under licence by IOP Publishing Ltd. Final 2023-05-29T08:08:52Z 2023-05-29T08:08:52Z 2020 Conference Paper 10.1088/1757-899X/864/1/012155 2-s2.0-85091096735 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85091096735&doi=10.1088%2f1757-899X%2f864%2f1%2f012155&partnerID=40&md5=94b9522c4262adbccc080ada4a3d885c https://irepository.uniten.edu.my/handle/123456789/25391 864 1 12155 All Open Access, Bronze IOP Publishing Ltd Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Water is the most demanding resource in the world especially in the era of the rapid growth of population and development. Therefore, delivering good quality water to consumers is important for their security of lives. Gravitational Filter Based on Origami Concept (G-Filtro) is a water filtration device that will be placed in a water tank at the residential area before people consumed it for everyday used. The specialty of this device, it does not necessarily attach to any power source. The objective of this project is to design and develop 3D G-Filtro using 3D CAD software and CFD analysis is used to determine the efficiency of the G-Filtro by simulating and model the pressure, velocity and streamline. Based on the result, the maximum water velocity for simulation without the filter is 0.266 m/s and the maximum velocity for first and second designed filter are 0.254 m/s and 0.243 m/s respectively. From the CFD simulation, the G-Filtro can remove the contaminants in water tank efficiently. Hence, it is proven that G-Filtro can be added as a new water filtration device. � Published under licence by IOP Publishing Ltd.
author2 39162217600
author_facet 39162217600
Zawawi M.H.
Mustafa Al Bakri Abdullah M.
Nazmi M.A.
Yusairah W.N.
Hassan N.H.
Shahira Jupri E.
Azam Afiq M.
Kamaruddin M.A.
Remy Rozainy Mohd Arif Zainol M.
Irfan A.R.
format Conference Paper
author Zawawi M.H.
Mustafa Al Bakri Abdullah M.
Nazmi M.A.
Yusairah W.N.
Hassan N.H.
Shahira Jupri E.
Azam Afiq M.
Kamaruddin M.A.
Remy Rozainy Mohd Arif Zainol M.
Irfan A.R.
spellingShingle Zawawi M.H.
Mustafa Al Bakri Abdullah M.
Nazmi M.A.
Yusairah W.N.
Hassan N.H.
Shahira Jupri E.
Azam Afiq M.
Kamaruddin M.A.
Remy Rozainy Mohd Arif Zainol M.
Irfan A.R.
Computational Fluid Dynamics Analysis of Gravitational Filter Based on Origami Concept (G-Filtro) Acted as Water Filtration Device in Water Tank
author_sort Zawawi M.H.
title Computational Fluid Dynamics Analysis of Gravitational Filter Based on Origami Concept (G-Filtro) Acted as Water Filtration Device in Water Tank
title_short Computational Fluid Dynamics Analysis of Gravitational Filter Based on Origami Concept (G-Filtro) Acted as Water Filtration Device in Water Tank
title_full Computational Fluid Dynamics Analysis of Gravitational Filter Based on Origami Concept (G-Filtro) Acted as Water Filtration Device in Water Tank
title_fullStr Computational Fluid Dynamics Analysis of Gravitational Filter Based on Origami Concept (G-Filtro) Acted as Water Filtration Device in Water Tank
title_full_unstemmed Computational Fluid Dynamics Analysis of Gravitational Filter Based on Origami Concept (G-Filtro) Acted as Water Filtration Device in Water Tank
title_sort computational fluid dynamics analysis of gravitational filter based on origami concept (g-filtro) acted as water filtration device in water tank
publisher IOP Publishing Ltd
publishDate 2023
_version_ 1806424038634946560
score 13.222552