1 |
Comparison of constant volume energy storage systems based on compressed air Salyga S, Szablowski L, Badyda K International Journal of Energy Research, 45(5), 8030, 2021 |
2 |
Regulatory aspects and electricity production analysis of an offshore wind farm in the Baltic Sea Sobotka A, Rowicki M, Badyda K, Sobotka P Renewable Energy, 170, 315, 2021 |
3 |
CFD analysis of natural gas substitution with syngas in the industrial furnaces Jozwiak P, Hercog J, Kiedrzynska A, Badyda K Energy, 179, 593, 2019 |
4 |
Comparative thermodynamic analysis of compressed air and liquid air energy storage systems Krawczyk P, Szablowski L, Karellas S, Kakaras E, Badyda K Energy, 142, 46, 2018 |
5 |
ANN-supported control strategy for a solid oxide fuel cell working on demand for a public utility building Szablowski L, Milewski J, Badyda K, Kupecki J International Journal of Hydrogen Energy, 43(6), 3555, 2018 |
6 |
Energy and exergy analysis of adiabatic compressed air energy storage system Szablowski L, Krawczyk P, Badyda K, Karellas S, Kakaras E, Bujalski W Energy, 138, 12, 2017 |
7 |
Relative environmental footprint of waste-based fuel burned in a power boiler in the context of end-of-waste criteria assigned to the fuel Badyda K, Krawczyk P, Pikon K Energy, 100, 425, 2016 |
8 |
A selective non-catalytic reduction of nitrogen oxides technology for application in industrial and municipal heating boilers Wrzesinska B, Krzywda R, Wasowski T, Krawczyk P, Badyda K Przemysl Chemiczny, 94(4), 608, 2015 |
9 |
The control strategy for a molten carbonate fuel cell hybrid system Milewski J, Swiercz T, Badyda K, Miller A, Dmowski A, Biczel P International Journal of Hydrogen Energy, 35(7), 2997, 2010 |
10 |
Influence of the fuel utilization factor on the performance of solid oxide fuel cell hybrid systems Milewski J, Miller A, Salacinski J, Badyda K Inzynieria Chemiczna i Procesowa, 27(1), 237, 2006 |