Cycle calculations of a small-scale heat removal system with supercritical CO2 as working fluid
M. Strätz, J. Starflinger, R. Mertz, M. Seewald, S. Schuster, and D. Brillert. Proceedings of the 25th International Conference on Nuclear Engineering - 2017, 3 : Nuclear Fuel and Material, Reactor Physics and Transport Theory; Innovative Nuclear Power Plant Design and New Technology Application, page 66084; 1-7. New York, NY, The American Society of Mechanical Engineers, (2017)
DOI: 10.1115/ICONE25-66084
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%0 Conference Paper
%1 stratz2017cycle
%A Strätz, Marcel
%A Starflinger, Jörg
%A Mertz, Rainer
%A Seewald, Michael
%A Schuster, Sebastian
%A Brillert, Dieter
%B Proceedings of the 25th International Conference on Nuclear Engineering - 2017
%C New York, NY
%D 2017
%I The American Society of Mechanical Engineers
%K
%P 66084; 1-7
%R 10.1115/ICONE25-66084
%T Cycle calculations of a small-scale heat removal system with supercritical CO2 as working fluid
%V 3 : Nuclear Fuel and Material, Reactor Physics and Transport Theory; Innovative Nuclear Power Plant Design and New Technology Application
%@ 978-0-7918-5781-6
@inproceedings{stratz2017cycle,
added-at = {2023-08-31T16:06:04.000+0200},
address = {New York, NY},
author = {Strätz, Marcel and Starflinger, Jörg and Mertz, Rainer and Seewald, Michael and Schuster, Sebastian and Brillert, Dieter},
biburl = {https://puma.ub.uni-stuttgart.de/bibtex/251c1281c10b74be57bf36a89241df87e/puma-wartung},
booktitle = {Proceedings of the 25th International Conference on Nuclear Engineering - 2017},
doi = {10.1115/ICONE25-66084},
eventdate = {2017-07-02/2017-07-06},
eventtitle = {2017 25th International Conference on Nuclear Engineering},
interhash = {bde068fab67947965496da662f84dba5},
intrahash = {51c1281c10b74be57bf36a89241df87e},
isbn = {978-0-7918-5781-6},
keywords = {},
language = {eng},
pages = {66084; 1-7},
publisher = {The American Society of Mechanical Engineers},
timestamp = {2023-08-31T14:06:04.000+0200},
title = {Cycle calculations of a small-scale heat removal system with supercritical CO2 as working fluid},
venue = {Shanghai},
volume = {3 : Nuclear Fuel and Material, Reactor Physics and Transport Theory; Innovative Nuclear Power Plant Design and New Technology Application},
year = 2017
}