Liquefied Hydrogen (LH2) or Liquefied Natural Gas (LNG) establish themselves as important energy carriers in the transport sector. Its storage requires tanks with Thermal Super Insulations (TSI) to keep the transported fluid cold. TSI has proven itself in various applications over a long time, but not in the land transport sector, where accidents involving collisions, fires, and their combination are to be expected. The focus of this study is to investigate the behavior of different types of TSI when exposed to a heat source that represents a fire. Therefore, a High-Temperature Thermal Vacuum Chamber (HTTVC) was used that allows the thermal loading of thermal insulation material in a vacuum and measuring the heat flow through the TSI in parallel. Within this study, 5 samples were tested regarding 3 different types of MLI, rock wool, and perlites. The thermal exposure caused different effects on the samples. In practice, this can be connected to the rapid release of flammable gases as well as a Boiling Liquid Expanding Vapour Explosion (BLEVE). These results are relevant for the evaluation of accident scenarios, the improvement of TSI, and the development of emergency measures

Eberwein, R., Hajhariri, A., Camplese, D., Scarponi, G.E., Cozzani, V., Otremba, F. (2023). A comparative study on insulation materials in tanks for the storage of cryogenic fluids in fire incidents. American Society of Mechanical Engineers (ASME) [10.1115/IMECE2023-110470].

A comparative study on insulation materials in tanks for the storage of cryogenic fluids in fire incidents

Camplese D.;Scarponi G. E.;Cozzani V.;
2023

Abstract

Liquefied Hydrogen (LH2) or Liquefied Natural Gas (LNG) establish themselves as important energy carriers in the transport sector. Its storage requires tanks with Thermal Super Insulations (TSI) to keep the transported fluid cold. TSI has proven itself in various applications over a long time, but not in the land transport sector, where accidents involving collisions, fires, and their combination are to be expected. The focus of this study is to investigate the behavior of different types of TSI when exposed to a heat source that represents a fire. Therefore, a High-Temperature Thermal Vacuum Chamber (HTTVC) was used that allows the thermal loading of thermal insulation material in a vacuum and measuring the heat flow through the TSI in parallel. Within this study, 5 samples were tested regarding 3 different types of MLI, rock wool, and perlites. The thermal exposure caused different effects on the samples. In practice, this can be connected to the rapid release of flammable gases as well as a Boiling Liquid Expanding Vapour Explosion (BLEVE). These results are relevant for the evaluation of accident scenarios, the improvement of TSI, and the development of emergency measures
2023
ASME International Mechanical Engineering Congress and Exposition, Proceedings (IMECE)
1
7
Eberwein, R., Hajhariri, A., Camplese, D., Scarponi, G.E., Cozzani, V., Otremba, F. (2023). A comparative study on insulation materials in tanks for the storage of cryogenic fluids in fire incidents. American Society of Mechanical Engineers (ASME) [10.1115/IMECE2023-110470].
Eberwein, R.; Hajhariri, A.; Camplese, D.; Scarponi, G. E.; Cozzani, V.; Otremba, F.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1002474
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