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Test of SIMAGAZ: a LWIR cryogenic multispectral infrared camera for methane gas leak detection and quantification

Authors :
Pierre-Yves Foucher
Sophie Jourdan
Emmanuel Vanneau
Hadrien Pinot
Stéphanie Doz
Guillaume Druart
Xavier Watremez
DOTA, ONERA, Université Paris Saclay [Palaiseau]
ONERA-Université Paris-Saclay
ONERA / DOTA, Université de Toulouse [Toulouse]
ONERA-PRES Université de Toulouse
TOTAL S.A.
TOTAL FINA ELF
LYNRED
NOXANT
Bertin Technologies
Source :
SPIE Defense + Commercial Sensing 2021, SPIE Defense + Commercial Sensing 2021, Apr 2021, Online, United States. pp.117270G, ⟨10.1117/12.2586933⟩
Publication Year :
2021
Publisher :
HAL CCSD, 2021.

Abstract

International audience; Cryogenic cameras are an innovative alternative in the design of miniaturized infrared cameras using cryogenic detectors. In this presentation, we will apply this technology to design a snapshot multispectral camera for gas leak detection. A UAV compatible demonstrator in a commercial Detector Dewar Cooler Assembly (DDCA), called SIMAGAZ, has been made and tested in the TOTAL Anomaly Detection Initiatives (TADI) platform and the Esperse site of ONERA. The TADI infrastructure manages monitored gas leaks at flowrates from 0.1 g/s to 300 g/s and hosts remote sensors to test them in three scenarios: crisis-management, safety monitoring, and environmental monitoring. In Esperse site, first UAV flights with SIMAGAZ were performed. We demonstrate the ability to detect and quantify in real time the origin of methane gas leak, the flowrate and the volume of the plume with SIMAGAZ on ground or from a UAV. The core camera weights around 1kg, for around 1L footprint and a power consumption of 10W at the cooling steady state. Results from TADI and Esperse campaigns will be presented.

Details

Language :
English
Database :
OpenAIRE
Journal :
SPIE Defense + Commercial Sensing 2021, SPIE Defense + Commercial Sensing 2021, Apr 2021, Online, United States. pp.117270G, ⟨10.1117/12.2586933⟩
Accession number :
edsair.doi.dedup.....e413cad120d21daa0a9bfe78f7d90702
Full Text :
https://doi.org/10.1117/12.2586933⟩