Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Nicolas Zweibaum"'
Publikováno v:
Nuclear Science and Engineering. 197:907-919
Publikováno v:
Nuclear Science and Engineering. 194:793-811
The capability to validate integral transient response models is of critical importance for licensing new reactor designs. The Kairos Power testing program has developed a methodology to design sca...
Autor:
Floren Rubio, Nicolas Zweibaum, Ian Craig, Johnathan Gilbreth, Barrett Williams, Alex Heald, Haihua Zhao
Publikováno v:
Nuclear Engineering and Design. 399:112006
Publikováno v:
Nuclear Technology. 196:641-660
The capability to validate integral transient response models is a key issue for licensing new reactor designs. The Compact Integral Effects Test (CIET 1.0) facility reproduces the thermal-hydrauli...
Publikováno v:
Guo, Z; Zweibaum, N; Shao, M; Huddar, LR; Peterson, PF; & Qiu, S. (2016). Development of the FHR advanced natural circulation analysis code and application to FHR safety analysis. Progress in Nuclear Energy, 91, 56-67. doi: 10.1016/j.pnucene.2016.03.022. Lawrence Berkeley National Laboratory: Retrieved from: http://www.escholarship.org/uc/item/3zr210ss
© 2016 Elsevier Ltd. All rights reserved. The University of California, Berkeley (UCB) is performing thermal hydraulics safety analysis to develop the technical basis for design and licensing of fluoride-salt-cooled, high-temperature reactors (FHRs)
Autor:
Sonat Sen, Floren Rubio, Per F. Peterson, Craig D. Gerardi, Elizabeth Hillstrom, Fatih Sinan Sarikurt, Haihua Zhao, Kevin Johnson, Lambert Fick, Kyle Brumback, Brandon Haugh, Nicolas Zweibaum, Edward D. Blandford
Publikováno v:
Scopus-Elsevier
The Kairos Power Fluoride salt-cooled High temperature Reactor (KP-FHR) is a new, U.S.-developed advanced reactor technology. In order to meet its development schedule and objectives, Kairos Power is adopting an innovative thermal hydraulics R&D stra
Autor:
Per F. Peterson, Edward D. Blandford, Raluca O. Scarlat, Nicolas Zweibaum, Michael R. Laufer, Anselmo T. Cisneros, Ehud Greenspan, D. L. Krumwiede, Charalampos Andreades, Charles Forsberg, Lin-Wen Hu
Publikováno v:
Progress in Nuclear Energy. 77:406-420
Fluoride-salt-cooled, high-temperature reactor (FHR) technology combines the robust coated-particle fuel of high-temperature, gas-cooled reactors with the single phase, high volumetric heat capacity coolant of molten salt reactors and the low-pressur
Autor:
Mark Anderson, Kumar Sridharan, Michael R. Laufer, Guoping Cao, Per F. Peterson, Ehud Greenspan, Brian C. Kelleher, Charles Forsberg, Lin-Wen Hu, Anselmo T. Cisneros, Jeffrey E. Seifried, Nicolas Zweibaum, Raluca O. Scarlat
Publikováno v:
Progress in Nuclear Energy. 77:390-405
Due to their combination of high-temperature coated-particle fuel, molten salt coolant and related materials requirements, fluoride-salt-cooled, high-temperature reactors (FHRs) exhibit different thermal hydraulic, neutronic and structural mechanics
Publikováno v:
AIP Conference Proceedings.
Sunlight to electricity efficiencies of Parabolic Trough Collector (PTC) plants are typically on the order of 15%, while commercial solar Photovoltaic (PV) technologies routinely achieve efficiencies of greater than 20%, albeit with much higher conve