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Thermal radiation, its effect on thermocouple measurements in the PANDA facility and how to compensate it
Falsetti, C., Kapulla, R., Paranjape, S., & Paladino, D. (2021). Thermal radiation, its effect on thermocouple measurements in the PANDA facility and how to compensate it. Nuclear Engineering and Design, 375, 111077 (9 pp.). https://doi.org/10.1016/j.nucengdes.2021.111077
Self-similarity for statistical properties in low-order representations of a large-scale turbulent round jet based on the proper orthogonal decomposition
Kapulla, R., Manohar, K. H., Paranjape, S., & Paladino, D. (2021). Self-similarity for statistical properties in low-order representations of a large-scale turbulent round jet based on the proper orthogonal decomposition. Experimental Thermal and Fluid Science, 123, 110320 (16 pp.). https://doi.org/10.1016/j.expthermflusci.2020.110320
Analyses of gas stratification erosion by a vertical jet in presence of an obstacle using the GOTHIC code
Andreani, M., Kapulla, R., Kelm, S., Paladino, D., & Paranjape, S. (2020). Analyses of gas stratification erosion by a vertical jet in presence of an obstacle using the GOTHIC code. Journal of Nuclear Engineering and Radiation Science, 6(2), 021110 (18 pp.). https://doi.org/10.1115/1.4046296
Gas mixing caused by interacting heat sources. Part ii: modelling
Andreani, M., & Paranjape, S. (2020). Gas mixing caused by interacting heat sources. Part ii: modelling. Nuclear Engineering and Design, 370, 110887 (16 pp.). https://doi.org/10.1016/j.nucengdes.2020.110887
Gas mixing caused by interacting heat sources PART I: experiments
Paranjape, S., Kapulla, R., Mignot, G., & Paladino, D. (2020). Gas mixing caused by interacting heat sources PART I: experiments. Nuclear Engineering and Design, 370, 110914 (14 pp.). https://doi.org/10.1016/j.nucengdes.2020.110914
Modelling of the interaction of two heat sources simulating the thermal effects of PARs
Andreani, M., & Paranjape, S. (2019). Modelling of the interaction of two heat sources simulating the thermal effects of PARs (p. (13 pp.). Presented at the ICAPP 2019 - International congress on advances in nuclear power plants. .
Synthesis of a CFD benchmark exercise based on a test in the PANDA facility addressing the stratification erosion by a vertical jet in presence of a flow obstruction
Andreani, M., Gaikwad, A. J., Ganju, S., Gera, B., Grigoryev, S., Herranz, L. E., … Zhang, R. (2019). Synthesis of a CFD benchmark exercise based on a test in the PANDA facility addressing the stratification erosion by a vertical jet in presence of a flow obstruction. Nuclear Engineering and Design, 354, 110177 (31 pp.). https://doi.org/10.1016/j.nucengdes.2019.110177
Pool stratification and mixing induced by steam injection through spargers: CFD modelling of the PPOOLEX and PANDA experiments
Gallego-Marcos, I., Kudinov, P., Villanueva, W., Kapulla, R., Paranjape, S., Paladino, D., … Kotro, E. (2019). Pool stratification and mixing induced by steam injection through spargers: CFD modelling of the PPOOLEX and PANDA experiments. Nuclear Engineering and Design, 347, 67-85. https://doi.org/10.1016/j.nucengdes.2019.03.011
High spatial resolution PIV measurements in the PANDA facility
Kapulla, R., Paranjape, S., Falsetti, C., & Paladino, D. (2019). High spatial resolution PIV measurements in the PANDA facility (p. (10 pp.). Presented at the ICAPP 2019 - international congress on advances in nuclear power plants. .
Experimental investigation of gas transport induced by containment spray activation during a scaled severe accident scenario
Paranjape, S., Mignot, G., Kapulla, R., & Paladino, D. (2019). Experimental investigation of gas transport induced by containment spray activation during a scaled severe accident scenario. Nuclear Engineering and Design, 342, 88-98. https://doi.org/10.1016/j.nucengdes.2018.11.017
Gas redistribution caused by interacting sources in the presence of a vertical condenser
Paranjape, S., Kapulla, R., Mignot, G., & Paladino, D. (2019). Gas redistribution caused by interacting sources in the presence of a vertical condenser (p. (13 pp.). Presented at the ICAPP 2019 - international congress on advances in nuclear power plants. .
Pool stratification and mixing induced by steam injection through spargers: analysis of the PPOOLEX and PANDA experiments
Gallego-Marcos, I., Kudinov, P., Villanueva, W., Kapulla, R., Paranjape, S., Paladino, D., … Kotro, E. (2018). Pool stratification and mixing induced by steam injection through spargers: analysis of the PPOOLEX and PANDA experiments. Nuclear Engineering and Design, 337, 300-316. https://doi.org/10.1016/j.nucengdes.2018.07.004
Large scale experiments representing a containment natural circulation loop during an accident scenario
Kapulla, R., Mignot, G., Paranjape, S., Andreani, M., & Paladino, D. (2018). Large scale experiments representing a containment natural circulation loop during an accident scenario. Science and Technology of Nuclear Installations, 2018, 8989070 (12 pp.). https://doi.org/10.1155/2018/8989070
Measurement of liquid films thickness in a condensing and re-evaporating environment using attenuation of near infrared light
Mignot, G., Dupont, J., Paranjape, S., Ouldrebai, H., Bissels, W. M., Paladino, D., & Prasser, H. M. (2018). Measurement of liquid films thickness in a condensing and re-evaporating environment using attenuation of near infrared light. Nuclear Engineering and Design, 336, 64-73. https://doi.org/10.1016/j.nucengdes.2017.06.023
Parametric study on density stratification erosion caused by a horizontal steam jet interacting with a vertical plate obstruction
Paranjape, S., Kapulla, R., Mignot, G., & Paladino, D. (2017). Parametric study on density stratification erosion caused by a horizontal steam jet interacting with a vertical plate obstruction. Nuclear Engineering and Design, 312, 351-360. https://doi.org/10.1016/j.nucengdes.2016.12.012
Modeling of thermal stratification and mixing induced by steam injection through spargers into a large water pool
Gallego-Marcos, I., Villanueva, W., Kapulla, R., Paranjape, S., Paladino, D., & Kudinov, P. (2016). Modeling of thermal stratification and mixing induced by steam injection through spargers into a large water pool (p. (17 pp.). Presented at the 6th computational fluid dynamics for nuclear reactor safety workshop (CFD4NRS 2016). .
Large scale experiments simulating hydrogen distribution in a spent fuel pool building during a hypothetical fuel uncovery accident scenario
Mignot, G., Paranjape, S., Paladino, D., Jaeckel, B., & Rydl, A. (2016). Large scale experiments simulating hydrogen distribution in a spent fuel pool building during a hypothetical fuel uncovery accident scenario. Nuclear Engineering and Technology, 48(4), 881-892. https://doi.org/10.1016/j.net.2016.06.005
Outcomes from the EURATOM–ROSATOM ERCOSAM SAMARA projects on containment thermal-hydraulics for severe accident management
Paladino, D., Andreani, M., Guentay, S., Mignot, G., Kapulla, R., Paranjape, S., … Visser, D. (2016). Outcomes from the EURATOM–ROSATOM ERCOSAM SAMARA projects on containment thermal-hydraulics for severe accident management. Nuclear Engineering and Design, 308, 103-114. https://doi.org/10.1016/j.nucengdes.2016.08.011
Erosion of a helium layer due to the flow resulting from the interaction of a steam jet with a flow obstruction in a large vessel
Paranjape, S., Kapulla, R., Mignot, G., & Paladino, D. (2016). Erosion of a helium layer due to the flow resulting from the interaction of a steam jet with a flow obstruction in a large vessel (p. N11A0514 (15 pp.). Presented at the 11th international topical meeting on nuclear reactor thermal hydraulics, operation and safety (NUTHOS-11). .
Performance of hydrogen mitigation systems for a scaled accident scenario: overview of ERCOSAM project experimental results for the PANDA facility
Mignot, G., Paranjape, S., Kapulla, R., & Paladino, D. (2015). Performance of hydrogen mitigation systems for a scaled accident scenario: overview of ERCOSAM project experimental results for the PANDA facility. In 16th international topical meeting on nuclear reactor thermal hydraulics (NURETH-16) (pp. 5456-5469). American Nuclear Society.