TY - GEN
T1 - Application of IR thermography for evaluating the integrity of a natural gas delivery station
AU - Nawrat, Aleksander
AU - Skorek, Janusz
AU - Jȩdrasiak, Karol
AU - Daniec, Krzysztof
AU - Kostowski, Wojciech
AU - Koteras, Roman
AU - Czornik, Adam
AU - Mendecka, Barbara
AU - Jarczyk, Dariusz
AU - Kasprzak, Damian
PY - 2012
Y1 - 2012
N2 - The paper explores possibilities of applying the IR thermography for integrity evaluation and quick detection of failures in natural gas delivery stations. The natural gas stations typically comprise overground facilities for filtering, pressure reduction, flow metering and odorizing. The facilities and the interconnecting pipelines are subject to risk of damages due to material failures or external factors. The failure detection algorithm presented in the paper is based on two physical phenomena concerning the temperature of piping. The first one is bound to the process of natural gas expansion to the atmosphere leading to a rapid decrease of the gas temperature, usually below the ambient temperature. Therefore, the flux of gas absorbs heat from the pipe walls implying a local drop of the surface temperature. The second phenomenon is related to the change of the flow pattern in the station, since leakages typically induce high discharge flow rates. The new flow pattern affects the thermal effect exerted by the gas flux on the pipe walls, hence significant variations from previous values as well as from the ambient conditions may be registered in short-time intervals. The algorithm implements integrity test procedures based on both thermal mechanisms, as well as initializing procedures for image normalization and identification of relevant pipeline sections.
AB - The paper explores possibilities of applying the IR thermography for integrity evaluation and quick detection of failures in natural gas delivery stations. The natural gas stations typically comprise overground facilities for filtering, pressure reduction, flow metering and odorizing. The facilities and the interconnecting pipelines are subject to risk of damages due to material failures or external factors. The failure detection algorithm presented in the paper is based on two physical phenomena concerning the temperature of piping. The first one is bound to the process of natural gas expansion to the atmosphere leading to a rapid decrease of the gas temperature, usually below the ambient temperature. Therefore, the flux of gas absorbs heat from the pipe walls implying a local drop of the surface temperature. The second phenomenon is related to the change of the flow pattern in the station, since leakages typically induce high discharge flow rates. The new flow pattern affects the thermal effect exerted by the gas flux on the pipe walls, hence significant variations from previous values as well as from the ambient conditions may be registered in short-time intervals. The algorithm implements integrity test procedures based on both thermal mechanisms, as well as initializing procedures for image normalization and identification of relevant pipeline sections.
KW - Image processing
KW - gas leaks detection
KW - low-cost thermal imaging
UR - https://www.scopus.com/pages/publications/84864201354
U2 - 10.1109/CarpathianCC.2012.6228698
DO - 10.1109/CarpathianCC.2012.6228698
M3 - Conference contribution
AN - SCOPUS:84864201354
SN - 9781457718687
T3 - Proceedings of the 2012 13th International Carpathian Control Conference, ICCC 2012
SP - 515
EP - 520
BT - Proceedings of the 2012 13th International Carpathian Control Conference, ICCC 2012
T2 - 2012 13th International Carpathian Control Conference, ICCC 2012
Y2 - 28 May 2012 through 31 May 2012
ER -