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A dynamic event tree informed approach to probabilistic accident sequence modeling: dynamics and variabilities in medium LOCA
Karanki, D. R., Kim, T. W., & Dang, V. N. (2015). A dynamic event tree informed approach to probabilistic accident sequence modeling: dynamics and variabilities in medium LOCA. Reliability Engineering and System Safety, 142, 78-91. https://doi.org/10.1016/j.ress.2015.04.011
Post-test thermal-hydraulic analysis of two intermediate LOCA tests at the ROSA facility including uncertainty evaluation
Freixa, J., Kim, T. W., & Manera, A. (2013). Post-test thermal-hydraulic analysis of two intermediate LOCA tests at the ROSA facility including uncertainty evaluation. Nuclear Engineering and Design, 264, 153-160. https://doi.org/10.1016/j.nucengdes.2013.02.023
Thermal-hydraulic analysis of an intermediate LOCA test at the ROSA facility including uncertainty evaluation
Freixa, J., Kim, T. W., & Manera, A. (2012). Thermal-hydraulic analysis of an intermediate LOCA test at the ROSA facility including uncertainty evaluation. Nuclear Engineering and Design, 249, 97-103. https://doi.org/10.1016/j.nucengdes.2011.08.061
The impact of dynamics on the MLOCA accident model - an application of dynamic event trees
Karanki, D. R., Dang, V. N., & Kim, T. W. (2012). The impact of dynamics on the MLOCA accident model - an application of dynamic event trees. In Vol. 3. 11th international probabilistic safety assessment and management conference and the annual european safety and reliability conference 2012. (PSAM11 ESREL 2012) (pp. 2468-2479).
Analysis of void fraction distribution and departure from nucleate boiling in single subchannel and bundle geometries using subchannel, system, and computational fluid dynamics codes
Kim, T., Petrov, V., Manera, A., & Lo, S. (2012). Analysis of void fraction distribution and departure from nucleate boiling in single subchannel and bundle geometries using subchannel, system, and computational fluid dynamics codes. Science and Technology of Nuclear Installations, 2012, 746467 (20 pp.). https://doi.org/10.1155/2012/746467
Quantitative evaluation of change in core damage frequency by postulated power uprate: medium-break loss-of-coolant-accidents
Kim, T. W., Dang, V. N., Zimmermann, M. A., & Manera, A. (2012). Quantitative evaluation of change in core damage frequency by postulated power uprate: medium-break loss-of-coolant-accidents. Annals of Nuclear Energy, 47, 69-80. https://doi.org/10.1016/j.anucene.2012.04.021
Indirect magnetic coupling of manganese porphyrin to a ferromagnetic cobalt substrate
Chylarecka, D., Kim, T. K., Tarafder, K., Müller, K., Gödel, K., Czekaj, I., … Jung, T. A. (2011). Indirect magnetic coupling of manganese porphyrin to a ferromagnetic cobalt substrate. Journal of Physical Chemistry C, 115(4), 1295-1301. https://doi.org/10.1021/jp106822s
Discrete dynamic event tree analysis of MLOCA using ADS-TRACE
Karanki, D. R., Dang, V. N., & Kim, T. W. (2011). Discrete dynamic event tree analysis of MLOCA using ADS-TRACE. In Vol. 1. International topical meeting on probabilistic safety assessment and analysis (PSA 2011) (pp. 610-622).
Assessing safety margins: the impact of a power uprate on risk from small and medium LOCA scenarios
Dang, V. N., Kim, T. W., Zimmermann, M. A., & Manera, A. (2010). Assessing safety margins: the impact of a power uprate on risk from small and medium LOCA scenarios. In Vol. 1. 10th international conference on probabilistic safety assessment & management, PSAM10 (pp. 83-92).