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Numerical study of emergency cryogenics gas relief into confined spaces

<!--HTML-->The presented work focuses on the risk analysis and the consequences of the unexpected leak to the tunnel of cryogenics gases. Formation of the gas mixture and its propagation along tunnels is an important issue for the safe operation of cryogenic machines, including superconducting...

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Autor principal: Malecha, Ziemowit
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2220126
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author Malecha, Ziemowit
author_facet Malecha, Ziemowit
author_sort Malecha, Ziemowit
collection CERN
description <!--HTML-->The presented work focuses on the risk analysis and the consequences of the unexpected leak to the tunnel of cryogenics gases. Formation of the gas mixture and its propagation along tunnels is an important issue for the safe operation of cryogenic machines, including superconducting accelerators or free electron lasers. As the cryogenics gas the helium and argon will be considered. A minimal numerical model will be presented and discussed. Series of numerical results related to emergency helium relief to the CERN tunnel and related to unexpected leak of the argon to an underground tunnel, will be shown. The numerical results will show temperature distribution, oxygen deficiency and gas cloud propagation in function of intensity of the leak and intensity of the ventilation.
id cern-2220126
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-22201262022-11-02T22:12:31Zhttp://cds.cern.ch/record/2220126engMalecha, ZiemowitNumerical study of emergency cryogenics gas relief into confined spacesCryogenic Safety - HSE seminarHSE Seminar<!--HTML-->The presented work focuses on the risk analysis and the consequences of the unexpected leak to the tunnel of cryogenics gases. Formation of the gas mixture and its propagation along tunnels is an important issue for the safe operation of cryogenic machines, including superconducting accelerators or free electron lasers. As the cryogenics gas the helium and argon will be considered. A minimal numerical model will be presented and discussed. Series of numerical results related to emergency helium relief to the CERN tunnel and related to unexpected leak of the argon to an underground tunnel, will be shown. The numerical results will show temperature distribution, oxygen deficiency and gas cloud propagation in function of intensity of the leak and intensity of the ventilation.oai:cds.cern.ch:22201262016
spellingShingle HSE Seminar
Malecha, Ziemowit
Numerical study of emergency cryogenics gas relief into confined spaces
title Numerical study of emergency cryogenics gas relief into confined spaces
title_full Numerical study of emergency cryogenics gas relief into confined spaces
title_fullStr Numerical study of emergency cryogenics gas relief into confined spaces
title_full_unstemmed Numerical study of emergency cryogenics gas relief into confined spaces
title_short Numerical study of emergency cryogenics gas relief into confined spaces
title_sort numerical study of emergency cryogenics gas relief into confined spaces
topic HSE Seminar
url http://cds.cern.ch/record/2220126
work_keys_str_mv AT malechaziemowit numericalstudyofemergencycryogenicsgasreliefintoconfinedspaces
AT malechaziemowit cryogenicsafetyhseseminar