001     911635
005     20250701125843.0
020 _ _ |a 978-3-95806-660-1
024 7 _ |a 2128/32885
|2 Handle
037 _ _ |a FZJ-2022-04891
100 1 _ |a Bessler, Yannick
|0 P:(DE-Juel1)143938
|b 0
|e Corresponding author
|u fzj
245 _ _ |a Strömungsmechanische Simulation und experimentelle Validierung des kryogenen Wasserstoff-Moderators für die Europäische Spallationsneutronenquelle ESS
|f - 2022-11-30
260 _ _ |a Jülich
|c 2022
|b Forschungszentrum Jülich GmbH Zentralbibliothek, Verlag
300 _ _ |a XXIV, 154, xxxiii
336 7 _ |a Output Types/Dissertation
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336 7 _ |a DISSERTATION
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336 7 _ |a Thesis
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336 7 _ |a Dissertation / PhD Thesis
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336 7 _ |a doctoralThesis
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490 0 _ |a Schriften des Forschungszentrums Jülich Reihe Schlüsseltechnologien / Key Technologies
|v 262
502 _ _ |a Dissertation, RWTH Aachen University, 2020
|c RWTH Aachen University
|b Dissertation
|d 2020
520 _ _ |a The European spallation neutron source ESS is currently under construction and should start part-load operation in 2023. With an average proton beam power of 5 MW, it will become the most powerful spallation neutron source worldwide. A key component of a spallation neutron source is the cold moderator. At the ESS, the cold moderator will be operated with liquid parahydrogen at a temperature and pressure around 20 K and 10 bar respectively and is intended to slow down (moderate) the fast neutrons, released by the spallation process, to the required low velocity level.
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856 4 _ |u https://juser.fz-juelich.de/record/911635/files/Schluesseltech_262.pdf
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