Hybrid U-shaped-microbend SMF evanescent wave sensor for river water quality assessment: a preliminary study / Amirul Hazim Kamarulzaman and Wan Maisarah Mukhtar
A hybrid U-shaped-microbend fiber optic evanescent wave sensor was developed by combining two types of bending structures on the optical communication single mode optical fiber (SMF28). To study the effect optical microbending on the output power, corrugated plates consisted of cylindrical structure...
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my.uitm.ir.470552021-06-08T04:45:38Z http://ir.uitm.edu.my/id/eprint/47055/ Hybrid U-shaped-microbend SMF evanescent wave sensor for river water quality assessment: a preliminary study / Amirul Hazim Kamarulzaman and Wan Maisarah Mukhtar Kamarulzaman, Amirul Hazim Mukhtar, Wan Maisarah Physical optics Fiber optics Water supply for domestic and industrial purposes Qualities of water. Water quality A hybrid U-shaped-microbend fiber optic evanescent wave sensor was developed by combining two types of bending structures on the optical communication single mode optical fiber (SMF28). To study the effect optical microbending on the output power, corrugated plates consisted of cylindrical structured surface with various distance between the glass rods of 6 cm, 12 cm and 18 cm were constructed. The macrobending effect was introduced by bending the SMF into two shapes, namely U-shaped and Sshaped. The bare SMF with various bending designs were immersed into numerous water sources from Sg. Simin, Sg. Batang Benar and Sg. Klang. The output demonstrated that Sg. Simin was the most polluted river, followed by Sg. Klang and Sg. Batang Benar using U-shaped microbend SMF with distance between glass rod of 6cm and 1310 nm laser source. This result showed an excellent agreement with water quality index (WQI) data released by the Department of Environment (DOE), Malaysia. Maximum optical output power was obtained by using Sg. Simin’s water sample due to better light absorption from the evanescent waves by the pollutant particles, that avoided light leakage in comparison with less polluted water sources. The optimum sensing performance was successfully resulted by using U-shaped SMF due to its durability and uniform evanescent waves radiated from the cladding. In conclusion, the hybrid U-shaped-microbend SMF sensor based on evanescent waves propagation portrays an excellent potential to detect water pollution by monitoring the presence of pollutants around the fiber. Faculty of Applied Sciences 2020 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/47055/1/47055.pdf ID47055 Kamarulzaman, Amirul Hazim and Mukhtar, Wan Maisarah (2020) Hybrid U-shaped-microbend SMF evanescent wave sensor for river water quality assessment: a preliminary study / Amirul Hazim Kamarulzaman and Wan Maisarah Mukhtar. Science Letters (ScL), 14 (1). pp. 14-22. ISSN (eISSN) 2682-8626 |
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Physical optics Fiber optics Water supply for domestic and industrial purposes Qualities of water. Water quality Kamarulzaman, Amirul Hazim Mukhtar, Wan Maisarah Hybrid U-shaped-microbend SMF evanescent wave sensor for river water quality assessment: a preliminary study / Amirul Hazim Kamarulzaman and Wan Maisarah Mukhtar |
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A hybrid U-shaped-microbend fiber optic evanescent wave sensor was developed by combining two types of bending structures on the optical communication single mode optical fiber (SMF28). To study the effect optical microbending on the output power, corrugated plates consisted of cylindrical structured surface with various distance between the glass rods of 6 cm, 12 cm and 18 cm were constructed. The macrobending effect was introduced by bending the SMF into two shapes, namely U-shaped and Sshaped. The bare SMF with various bending designs were immersed into numerous water sources from Sg. Simin, Sg. Batang Benar and Sg. Klang. The output demonstrated that Sg. Simin was the most polluted river, followed by Sg. Klang and Sg. Batang Benar using U-shaped microbend SMF with distance between glass rod of 6cm and 1310 nm laser source. This result showed an excellent agreement with water quality index (WQI) data released by the Department of Environment (DOE), Malaysia. Maximum optical output power was obtained by using Sg. Simin’s water sample due to better light absorption from the evanescent waves by the pollutant particles, that avoided light leakage in comparison with less polluted water sources. The optimum sensing performance was successfully resulted by using U-shaped SMF due to its durability and uniform evanescent waves radiated from the cladding. In conclusion, the hybrid U-shaped-microbend SMF sensor based on evanescent waves propagation portrays an excellent potential to detect water pollution by monitoring the presence of pollutants around the fiber. |
format |
Article |
author |
Kamarulzaman, Amirul Hazim Mukhtar, Wan Maisarah |
author_facet |
Kamarulzaman, Amirul Hazim Mukhtar, Wan Maisarah |
author_sort |
Kamarulzaman, Amirul Hazim |
title |
Hybrid U-shaped-microbend SMF evanescent wave sensor for river water quality assessment: a preliminary study / Amirul Hazim Kamarulzaman and Wan Maisarah Mukhtar |
title_short |
Hybrid U-shaped-microbend SMF evanescent wave sensor for river water quality assessment: a preliminary study / Amirul Hazim Kamarulzaman and Wan Maisarah Mukhtar |
title_full |
Hybrid U-shaped-microbend SMF evanescent wave sensor for river water quality assessment: a preliminary study / Amirul Hazim Kamarulzaman and Wan Maisarah Mukhtar |
title_fullStr |
Hybrid U-shaped-microbend SMF evanescent wave sensor for river water quality assessment: a preliminary study / Amirul Hazim Kamarulzaman and Wan Maisarah Mukhtar |
title_full_unstemmed |
Hybrid U-shaped-microbend SMF evanescent wave sensor for river water quality assessment: a preliminary study / Amirul Hazim Kamarulzaman and Wan Maisarah Mukhtar |
title_sort |
hybrid u-shaped-microbend smf evanescent wave sensor for river water quality assessment: a preliminary study / amirul hazim kamarulzaman and wan maisarah mukhtar |
publisher |
Faculty of Applied Sciences |
publishDate |
2020 |
url |
http://ir.uitm.edu.my/id/eprint/47055/1/47055.pdf http://ir.uitm.edu.my/id/eprint/47055/ |
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1702172672159383552 |
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13.214268 |