Simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical
The growing concern over the adulteration of petrochemical surely contributed to the confusion on the authentication of petrochemical as there have been adulterated with additional substances that affect the quality of products. This paper presents a simulation of D-shaped optical fiber sensor for a...
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my.utm.1036622023-11-20T03:35:17Z http://eprints.utm.my/103662/ Simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical Azzahari, Najwa Sapingi, Husni Hani Jameela Mohd. Razali, Sumiaty Nazirah Ambran, Sumiaty T Technology (General) The growing concern over the adulteration of petrochemical surely contributed to the confusion on the authentication of petrochemical as there have been adulterated with additional substances that affect the quality of products. This paper presents a simulation of D-shaped optical fiber sensor for adulterant traces in liquid petrochemical. The simulation is performed using Wave Optics Module-COMSOL Multiphysics®. The simulation was conducted by assuming the D-shaped is surrounded with liquid petrochemical with refractive index ranging from 1.40 RIU to 1.50 RIU, based on the collected information in the previous literature. This paper depicts the response of the manipulated parameter towards the electric field distribution and the effective refractive index, which is taken to be analyzed. In the future, the sensor can be utilized effectively to detect and analyze adulteration substances. 2021 Conference or Workshop Item PeerReviewed Azzahari, Najwa and Sapingi, Husni Hani Jameela and Mohd. Razali, Sumiaty Nazirah and Ambran, Sumiaty (2021) Simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical. In: 9th International Conference on Electrical Engineering, Computer Science and Informatics, EECSI 2022, 6 October 2022 - 7 October 2022, Jakarta, Indonesia. http://dx.doi.org/10.23919/EECSI56542.2022.9946492 |
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T Technology (General) Azzahari, Najwa Sapingi, Husni Hani Jameela Mohd. Razali, Sumiaty Nazirah Ambran, Sumiaty Simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical |
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The growing concern over the adulteration of petrochemical surely contributed to the confusion on the authentication of petrochemical as there have been adulterated with additional substances that affect the quality of products. This paper presents a simulation of D-shaped optical fiber sensor for adulterant traces in liquid petrochemical. The simulation is performed using Wave Optics Module-COMSOL Multiphysics®. The simulation was conducted by assuming the D-shaped is surrounded with liquid petrochemical with refractive index ranging from 1.40 RIU to 1.50 RIU, based on the collected information in the previous literature. This paper depicts the response of the manipulated parameter towards the electric field distribution and the effective refractive index, which is taken to be analyzed. In the future, the sensor can be utilized effectively to detect and analyze adulteration substances. |
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Conference or Workshop Item |
author |
Azzahari, Najwa Sapingi, Husni Hani Jameela Mohd. Razali, Sumiaty Nazirah Ambran, Sumiaty |
author_facet |
Azzahari, Najwa Sapingi, Husni Hani Jameela Mohd. Razali, Sumiaty Nazirah Ambran, Sumiaty |
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Azzahari, Najwa |
title |
Simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical |
title_short |
Simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical |
title_full |
Simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical |
title_fullStr |
Simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical |
title_full_unstemmed |
Simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical |
title_sort |
simulation of d-shaped optical fiber sensor for adulterant traces in liquid petrochemical |
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2021 |
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http://eprints.utm.my/103662/ http://dx.doi.org/10.23919/EECSI56542.2022.9946492 |
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