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Modeling, Simulation and Experimental Studies of Refractometric Fiber Optic Sensor

DOI: 10.4236/jst.2023.131001, PP. 1-11

Keywords: Refractometric Fiber Optic Sensor, Mathematical Modeling, Ray Tracing Technique

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Abstract:

Refractometric fiber optic sensors have a number of applications in industry due to advantages like remote sensing ability, compact size, easy to fit, etc. A refractometric sensor contains a pair of parallel fibers and a gap between the sensor probe and reflector, wherein the liquid whose refractive index is to be measured is filled. This paper describes the importance of mathematical modeling of this sensor. Ray tracing approach is used to model the sensor mathematically. This mathematical model is generalized for any scenario which is useful to avoid tedious trial and error techniques to design the sensor prototype. Mathematical modelling is a useful tool to optimize the gap distance for a detection of refractive index of liquid. The model is developed and analyzed rigorously considering adulteration of diesel by kerosene where refractive index varies from 1.44 to 1.46. Simulation experiments are carried out to optimize the gap distance which is found to be 6.8 mm using both models. Experiments are carried out where sensor probe is fabricated and results are analyzed. It is observed that for suggested gap distance sensor output varies almost linear over the entire range.

References

[1]  Laguesse, M. (1988) An Optical Fibre Refractometer for Liquids Using Two Measurement Channels to Reject Optical Attenuation. Journal of Physics E: Scientific Instruments, 21, 64-67.
https://doi.org/10.1088/0022-3735/21/1/010
[2]  Chaudhari, A.L. and Shaligram, A.D. (2002) Multi-Wavelength Optical Fiber Liquid Refractometry Based on Intensity Modulation. Sensors and Actuators A: Physical, 100, 160-164.
https://doi.org/10.1016/S0924-4247(02)00040-7
[3]  Patil, S.S. and Shaligram, A.D. (2011) Modeling and Experimental Studies on Retro-Reflective Fiber Optic Micro-Displacement with Variable Geometrical Properties. Sensors and Actuators A: Physical, 172, 428-433.
https://doi.org/10.1016/j.sna.2011.10.006
[4]  Chaudhari, A.L. and Shaligram, A.D. (2013) Simulation and Experimental Studies of Extrinsic Fiber Optic Sensor for Liquid Refractometry. Optik—International Journal for Light and Electron Optics, 124, 3134-3137.
https://doi.org/10.1016/j.ijleo.2012.09.041
[5]  Chaudhari, A.L. and Shaligram, A.D. (2012) Fiber Optic Sensor for the Measurement of Concentration and Refractive Index of Liquids Based on Intensity Modulation. International Journal of Modern Physics, 6, 589-593.
https://doi.org/10.1142/S2010194512003820
[6]  Patil, S.S. and Shaligram, A.D. (2011) Refractometric Fiber Optic Adulteration Level Detector for Diesel. International Journal of Advances in Engineering & Technology, 195, 195-203.
[7]  Sengupta, B. (2005) Transport Fuel Quality. Delhi 32 PROBES/78/2000-2001. Central Pollution Control Board Publication.
[8]  Yadav, Sh.R., Murthy, K.V., Mishra, D. and Baral, B. (2005) Estimation of Petrol and Diesel Adulteration with Kerosene and Assessment of Usefulness of Selected Automobile Fuel Quality Test Parameters. International Journal of Environmental Science & Technology, 1, 253-255.
https://doi.org/10.1007/BF03325839
[9]  Wiedemann, L.S.M., d’Avila, L.A. and Azevedo, D.A. (March 2005) Adulteration Detection of Brazilian Gasoline Samples by Statistical Analysis. Fuel, 84, 467-473.
https://doi.org/10.1016/j.fuel.2004.09.013
[10]  Roy, S. (May 1999) Fiber Optic Sensor for Determining Adulteration of Petrol and Diesel by Kerosene. Sensors and Actuators B: Chemical, 55, 212-216.
https://doi.org/10.1016/S0925-4005(99)00171-9
[11]  Bali, L.M., Srivastava, A.K., Shukla, R.K. and Srivastava, A. (1999) Optical Sensor for Determining Adulteration in a Liquid Sample. Optical Engineering, 38, 1715-1717.
https://doi.org/10.1117/1.602223
[12]  Govindan, G., Raj, S.G. AND Sastikumar, D. (2009) Measurement of Refractive Index of Liquids Using Fiber Optic Displacement Sensors. Journal of American Science, 5, 13-17.

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