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Sensitivity analysis of numerically determined linear stability boundaries of a supercritical heated channel

(2011) NUCLEAR ENGINEERING AND DESIGN. 241(9). p.3879-3889
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supercritical fluids, thermo-hydraulics, stability, THERMAL-HYDRAULIC STABILITY, NATURAL CIRCULATION LOOP, WATER-REACTORS, FRICTION FACTOR, TURBULENT PIPE, FLOW, FLUIDS, INSTABILITIES, PRESSURES, STATE

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Citation

Please use this url to cite or link to this publication:

Chicago
T’Joen, Christophe, Luca Gilli, and Martin Rohde. 2011. “Sensitivity Analysis of Numerically Determined Linear Stability Boundaries of a Supercritical Heated Channel.” Nuclear Engineering and Design 241 (9): 3879–3889.
APA
T’Joen, C., Gilli, L., & Rohde, M. (2011). Sensitivity analysis of numerically determined linear stability boundaries of a supercritical heated channel. NUCLEAR ENGINEERING AND DESIGN, 241(9), 3879–3889.
Vancouver
1.
T’Joen C, Gilli L, Rohde M. Sensitivity analysis of numerically determined linear stability boundaries of a supercritical heated channel. NUCLEAR ENGINEERING AND DESIGN. 2011;241(9):3879–89.
MLA
T’Joen, Christophe, Luca Gilli, and Martin Rohde. “Sensitivity Analysis of Numerically Determined Linear Stability Boundaries of a Supercritical Heated Channel.” NUCLEAR ENGINEERING AND DESIGN 241.9 (2011): 3879–3889. Print.
@article{1907415,
  author       = {T'Joen, Christophe and Gilli, Luca and Rohde, Martin },
  issn         = {0029-5493},
  journal      = {NUCLEAR ENGINEERING AND DESIGN},
  keyword      = {supercritical fluids,thermo-hydraulics,stability,THERMAL-HYDRAULIC STABILITY,NATURAL CIRCULATION LOOP,WATER-REACTORS,FRICTION FACTOR,TURBULENT PIPE,FLOW,FLUIDS,INSTABILITIES,PRESSURES,STATE},
  language     = {eng},
  number       = {9},
  pages        = {3879--3889},
  title        = {Sensitivity analysis of numerically determined linear stability boundaries of a supercritical heated channel},
  url          = {http://dx.doi.org/10.1016/j.nucengdes.2011.07.005},
  volume       = {241},
  year         = {2011},
}

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