Evaluation of paraffin/water emulsion as a phase change slurry for cooling applications L Huang, M Petermann, C Doetsch Energy 34 (9), 1145-1155, 2009 | 197 | 2009 |
State of the art on phase change material slurries Z Youssef, A Delahaye, L Huang, F Trinquet, L Fournaison, C Pollerberg, ... Energy Conversion and Management 65, 120-132, 2013 | 181 | 2013 |
Energietechnologien 2050-Schwerpunkte für Forschung und Entwicklung M Arens, C Dötsch, S Herkel, W Krewitt, P Markewitz, D Möst, M Scheufen Fraunhofer-Verlag, 2010 | 149 | 2010 |
The fluid dynamics of ice slurry A Kitanovski, D Vuarnoz, D Ata-Caesar, PW Egolf, TM Hansen, C Doetsch International journal of refrigeration 28 (1), 37-50, 2005 | 141 | 2005 |
Subcooling in PCM emulsions—Part 1: experimental L Huang, E Günther, C Doetsch, H Mehling Thermochimica Acta 509 (1-2), 93-99, 2010 | 123 | 2010 |
Subcooling in PCM emulsions–Part 2: Interpretation in terms of nucleation theory E Günther, L Huang, H Mehling, C Dötsch Thermochimica Acta 522 (1-2), 199-204, 2011 | 109 | 2011 |
Technology guide: Principles-applications-trends L Behlau Springer Science & Business Media, 2009 | 84 | 2009 |
Low temperature paraffin phase change emulsions L Huang, C Doetsch, C Pollerberg International journal of refrigeration 33 (8), 1583-1589, 2010 | 80 | 2010 |
Solar driven steam jet ejector chiller C Pollerberg, AHH Ali, C Dötsch Applied Thermal Engineering 29 (5-6), 1245-1252, 2009 | 75 | 2009 |
Electric vehicles as flexible loads–A simulation approach using empirical mobility data M Metz, C Doetsch Energy 48 (1), 369-374, 2012 | 73 | 2012 |
Experimental study on the performance of a solar driven steam jet ejector chiller C Pollerberg, AHH Ali, C Dötsch Energy Conversion and Management 49 (11), 3318-3325, 2008 | 65 | 2008 |
Handbuch Ressourcenorientierte Produktion R Neugebauer Carl Hanser Verlag GmbH Co KG, 2013 | 64 | 2013 |
Experimental study on heat capacity of paraffin/water phase change emulsion L Huang, P Noeres, M Petermann, C Doetsch Energy Conversion and Management 51 (6), 1264-1269, 2010 | 54 | 2010 |
Leitfaden nahwärme C Dötsch, J Taschenberger, I Schönberg Fraunhofer-IRB-Verlag, 1998 | 47 | 1998 |
Vanadium redox flow batteries C Doetsch, J Burfeind Storing energy, 363-381, 2022 | 41 | 2022 |
Potential improvement to a citric wastewater treatment plant using bio-hydrogen and a hybrid energy system X Zhi, H Yang, S Berthold, C Doetsch, J Shen Journal of Power Sources 195 (19), 6945-6953, 2010 | 37 | 2010 |
Technologieführer: Grundlagen-Anwendungen-Trends HJ Bullinger Springer, 2006 | 31 | 2006 |
Adiabatic Compressed Air Energy Storage co-located with wind energy—multifunctional storage commitment optimization for the German market using GOMES D Wolf, A Kanngießer, M Budt, C Doetsch Energy Systems 3, 181-208, 2012 | 28 | 2012 |
Redox flow batteries: stationary energy storages with potential J Girschik, L Kopietz, M Joemann, A Grevé, C Doetsch Chemie Ingenieur Technik 93 (4), 523-533, 2021 | 27 | 2021 |
The use of flow batteries in storing electricity for national grids C Doetsch, A Pohlig Future Energy, 263-277, 2020 | 27 | 2020 |