Distributed FBG Temperature Sensor for Coal Mine Fire Detection
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-16-5987-4_34
Reference14 articles.
1. Guansheng Q, Deming W et al (2016) Smoldering combustion of coal under forced air flow: experimental investigation. J Fire Sci 34:267–288
2. Onifade M, Genc B (2019) Spontaneous combustion liability of coal and coal-shale: a review of prediction methods. J Coal Sci Technol 6:151–168
3. Mohammed A, Babani S, Sanka AI, Abdullahi NA (2015) A comparative study between different types of temperature sensor. Int J Ind Electron Electric Eng 3:11–13
4. Jonathan O, Tobias M, Felix D, Konstantinos M, Johannes R, Klaus D, Roths J, Drechsler K (2018) Fiber optic measurement system for fresnel reflection sensing: calibration, uncertainty, and exemplary application in temperature-modulated isothermal polymer curing. J Lightwave Technol 36:939–945
5. Kadhim SA, Taha SAA, Resen DA (2015) Temperature sensor basedon fiber bragg grating (FBG), implementation, evaluation and spectral characterization study. Int J Innov Res Sci Eng Technol 4:8038–8043
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