Single-and two-fluid models for steam condensing flow modeling S Dykas, W Wróblewski International Journal of Multiphase Flow 37 (9), 1245-1253, 2011 | 120 | 2011 |
Steam condensing flow modeling in turbine channels W Wróblewski, S Dykas, A Gepert International Journal of Multiphase Flow 35 (6), 498-506, 2009 | 117 | 2009 |
Results of the international wet steam modeling project J Starzmann, FR Hughes, S Schuster, AJ White, J Halama, V Hric, ... Proceedings of the Institution of Mechanical Engineers, Part A: Journal of …, 2018 | 111 | 2018 |
Numerical modelling of steam condensing flow in low and high-pressure nozzles S Dykas, W Wróblewski International Journal of Heat and Mass Transfer 55 (21-22), 6191-6199, 2012 | 104 | 2012 |
Experimental study of condensing steam flow in nozzles and linear blade cascade S Dykas, M Majkut, M Strozik, K Smołka International Journal of Heat and Mass Transfer 80, 50-57, 2015 | 94 | 2015 |
Numerical and experimental investigations of steam condensation in LP part of a large power turbine W Wróblewski, S Dykas, A Gardzilewicz, M Kolovratnik | 77 | 2009 |
Two-fluid model for prediction of wet steam transonic flow S Dykas, W Wróblewski International Journal of Heat and Mass Transfer 60, 88-94, 2013 | 75 | 2013 |
Experimental and numerical research on the effect of the inlet steam superheat degree on the spontaneous condensation in the IWSEP nozzle G Zhang, S Dykas, M Majkut, K Smołka, X Cai International Journal of Heat and Mass Transfer 165, 120654, 2021 | 73 | 2021 |
Optimization of the primary nozzle based on a modified condensation model in a steam ejector G Zhang, S Dykas, S Yang, X Zhang, H Li, J Wang Applied Thermal Engineering 171, 115090, 2020 | 66 | 2020 |
Numerical calculation of the steam condensing flow S Dykas TASK Quarterly: scientific bulletin of Academic Computer Centre in Gdansk 5 …, 2001 | 63 | 2001 |
Two-fluid model with droplet size distribution for condensing steam flows W Wróblewski, S Dykas Energy 106, 112-120, 2016 | 54 | 2016 |
Accurate condensing steam flow modeling in the ejector of the solar-driven refrigeration system G Zhang, S Dykas, P Li, H Li, J Wang Energy 212, 118690, 2020 | 50 | 2020 |
Study of the wet steam flow in the blade tip rotor linear blade cascade S Dykas, M Majkut, K Smołka, M Strozik International Journal of Heat and Mass Transfer 120, 9-17, 2018 | 50 | 2018 |
Comprehensive investigations into thermal and flow phenomena occurring in the atmospheric air two-phase flow through nozzles S Dykas, M Majkut, K Smołka, M Strozik International Journal of Heat and Mass Transfer 114, 1072-1085, 2017 | 49 | 2017 |
Calculation of an advanced ultra-supercritical power unit with CO2 capture installation K Stępczyńska-Drygas, H Łukowicz, S Dykas Energy Conversion and Management 74, 201-208, 2013 | 49 | 2013 |
Prediction of losses in the flow through the last stage of low‐pressure steam turbine S Dykas, W Wróblewski, H Łukowicz International Journal for Numerical Methods in Fluids 53 (6), 933-945, 2007 | 44 | 2007 |
Reduction entropy generation and condensation by NaCl particle injection in wet steam supersonic nozzle G Zhang, X Wang, S Dykas, MAF Aliabadi International Journal of Thermal Sciences 171, 107207, 2022 | 40 | 2022 |
Control of two-phase heat transfer and condensation loss in turbine blade cascade by injection water droplets MAF Aliabadi, G Zhang, S Dykas, H Li Applied Thermal Engineering 186, 116541, 2021 | 38 | 2021 |
Thermodynamic and economic assessment of compressed carbon dioxide energy storage systems using a post-mining underground infrastructure Ł Bartela, A Skorek-Osikowska, S Dykas, B Stanek Energy Conversion and Management 241, 114297, 2021 | 37 | 2021 |
Losses estimation in transonic wet steam flow through linear blade cascade S Dykas, M Majkut, M Strozik, K Smołka Journal of Thermal Science 24, 109-116, 2015 | 32 | 2015 |