A comparative study of the carbon dioxide transcritical power cycle compared with an organic Rankine cycle with R123 as working fluid in waste heat recovery Y Chen, P Lundqvist, A Johansson, P Platell Applied thermal engineering 26 (17-18), 2142-2147, 2006 | 527 | 2006 |
Propane heat pump with low refrigerant charge: design and laboratory tests P Fernando, B Palm, P Lundqvist, E Granryd International journal of refrigeration 27 (7), 761-773, 2004 | 182 | 2004 |
An exergy analysis of a solar-driven ejector refrigeration system W Pridasawas, P Lundqvist Solar energy 76 (4), 369-379, 2004 | 166 | 2004 |
Techno-economic review of solar heat pump systems for residential heating applications S Poppi, N Sommerfeldt, C Bales, H Madani, P Lundqvist Renewable and Sustainable Energy Reviews 81, 22-32, 2018 | 156 | 2018 |
Theoretical research of carbon dioxide power cycle application in automobile industry to reduce vehicle’s fuel consumption Y Chen, P Lundqvist, P Platell Applied Thermal Engineering 25 (14-15), 2041-2053, 2005 | 155 | 2005 |
A year-round dynamic simulation of a solar-driven ejector refrigeration system with iso-butane as a refrigerant W Pridasawas, P Lundqvist International Journal of Refrigeration 30 (5), 840-850, 2007 | 146 | 2007 |
Capacity control in ground source heat pump systems part II: Comparative analysis between on/off controlled and variable capacity systems H Madani, J Claesson, P Lundqvist International journal of refrigeration 34 (8), 1934-1942, 2011 | 83 | 2011 |
Heat recovery and floating condensing in supermarkets J Arias, P Lundqvist Energy and Buildings 38 (2), 73-81, 2006 | 83 | 2006 |
Capacity control in ground source heat pump systems: Part I: modeling and simulation H Madani, J Claesson, P Lundqvist International Journal of Refrigeration 34 (6), 1338-1347, 2011 | 82 | 2011 |
Experimental investigation of ice slurry flow pressure drop in horizontal tubes M Grozdek, R Khodabandeh, P Lundqvist Experimental Thermal and Fluid Science 33 (2), 357-370, 2009 | 81 | 2009 |
Comparison and analysis of performance using Low Temperature Power Cycles H Öhman, P Lundqvist Applied Thermal Engineering 52 (1), 160-169, 2013 | 76 | 2013 |
Energy at your service: highlighting energy usage systems in the context of energy efficiency analysis DK Jonsson, S Gustafsson, J Wangel, M Höjer, P Lundqvist, Ö Svane Energy efficiency 4 (3), 355-369, 2011 | 71 | 2011 |
A descriptive and comparative analysis of three common control techniques for an on/off controlled Ground Source Heat Pump (GSHP) system H Madani, J Claesson, P Lundqvist Energy and Buildings 65, 1-9, 2013 | 66 | 2013 |
Categorizing barriers to energy efficiency in buildings JA Vogel, P Lundqvist, J Arias Energy Procedia 75, 2839-2845, 2015 | 64 | 2015 |
Integration of trigeneration in an indirect cascade refrigeration system in supermarkets MA Marimón, J Arias, P Lundqvist, JC Bruno, A Coronas Energy and Buildings 43 (6), 1427-1434, 2011 | 64 | 2011 |
A minichannel aluminium tube heat exchanger–Part I: Evaluation of single-phase heat transfer coefficients by the Wilson plot method P Fernando, B Palm, T Ameel, P Lundqvist, E Granryd international journal of refrigeration 31 (4), 669-680, 2008 | 56 | 2008 |
Dynamic simulation of a solar-driven carbon dioxide transcritical power system for small scale combined heat and power production Y Chen, W Pridasawas, P Lundqvist Solar Energy 84 (7), 1103-1110, 2010 | 54 | 2010 |
A minichannel aluminium tube heat exchanger–Part III: Condenser performance with propane P Fernando, B Palm, T Ameel, P Lundqvist, E Granryd International Journal of Refrigeration 31 (4), 696-708, 2008 | 52 | 2008 |
Experimental investigation of a Lysholm Turbine operating with superheated, saturated and 2-phase inlet conditions H Öhman, P Lundqvist Applied Thermal Engineering 50 (1), 1211-1218, 2013 | 49 | 2013 |
A method to estimate the circulated composition in refrigeration and heat pump systems using zeotropic refrigerant mixtures A Johansson, P Lundqvist International journal of refrigeration 24 (8), 798-808, 2001 | 49 | 2001 |