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María José Montes
María José Montes
Associated Professor
Verified email at ind.uned.es
Title
Cited by
Cited by
Year
Solar multiple optimization for a solar-only thermal power plant, using oil as heat transfer fluid in the parabolic trough collectors
MJ Montes, A Abánades, JM Martínez-Val, M Valdés
Solar energy 83 (12), 2165-2176, 2009
5742009
Performance analysis of an integrated solar combined cycle using direct steam generation in parabolic trough collectors
MJ Montes, A Rovira, M Muñoz, JM Martínez-Val
Applied energy 88 (9), 3228-3238, 2011
3072011
Performance of a direct steam generation solar thermal power plant for electricity production as a function of the solar multiple
MJ Montes, A Abánades, JM Martínez-Val
Solar Energy 83 (5), 679-689, 2009
2562009
Solar radiation concentration features in Linear Fresnel Reflector arrays
R Abbas, MJ Montes, M Piera, JM Martínez-Val
Energy Conversion and Management 54 (1), 133-144, 2012
1952012
Comparison of heat transfer fluid and direct steam generation technologies for integrated solar combined cycles
A Rovira, MJ Montes, F Varela, M Gil
Applied Thermal Engineering 52 (2), 264-274, 2013
1562013
A comparative analysis of configurations of linear Fresnel collectors for concentrating solar power
MJ Montes, C Rubbia, R Abbas, JM Martínez-Val
Energy 73, 192-203, 2014
1262014
Analysis and comparison of Integrated Solar Combined Cycles using parabolic troughs and linear Fresnel reflectors as concentrating systems
A Rovira, R Barbero, MJ Montes, R Abbas, F Varela
Applied Energy 162, 990-1000, 2016
1182016
Thermofluidynamic model and comparative analysis of parabolic trough collectors using oil, water/steam, or molten salt as heat transfer fluids
MJ Montes, A Abánades, JM Martínez-Val
1132010
A novel supercritical CO2 recompression Brayton power cycle for power tower concentrating solar plants
JI Linares, MJ Montes, A Cantizano, C Sánchez
Applied Energy 263, 114644, 2020
1112020
Parabolic trough collector or linear Fresnel collector? A comparison of optical features including thermal quality based on commercial solutions
R Abbas, MJ Montes, A Rovira, JM Martínez-Val
Solar energy 124, 198-215, 2016
832016
Energy management in solar thermal power plants with double thermal storage system and subdivided solar field
A Rovira, MJ Montes, M Valdes, JM Martínez-Val
Applied Energy 88 (11), 4055-4066, 2011
832011
Performance model and thermal comparison of different alternatives for the Fresnel single-tube receiver
MJ Montes, R Barbero, R Abbas, A Rovira
Applied Thermal Engineering 104, 162-175, 2016
722016
Proposal of a fluid flow layout to improve the heat transfer in the active absorber surface of solar central cavity receivers
MJ Montes, A Rovira, JM Martínez-Val, A Ramos
Applied Thermal Engineering 35, 220-232, 2012
602012
Optical features of linear Fresnel collectors with different secondary reflector technologies
R Abbas, A Sebastián, MJ Montes, M Valdés
Applied Energy 232, 386-397, 2018
492018
Advances in the linear Fresnel single-tube receivers: Hybrid loops with non-evacuated and evacuated receivers
MJ Montes, R Abbas, M Muñoz, J Muñoz-Antón, JM Martínez-Val
Energy Conversion and management 149, 318-333, 2017
492017
Optimization of Brayton cycles for low-to-moderate grade thermal energy sources
A Rovira, J Muñoz-Antón, MJ Montes, JM Martínez-Val
Energy 55, 403-416, 2013
402013
Safety issues of nuclear production of hydrogen
M Piera, JM Martínez-Val, MJ Montes
Energy conversion and management 47 (17), 2732-2739, 2006
402006
Design of an innovative linear Fresnel collector by means of optical performance optimization: A comparison with parabolic trough collectors for different latitudes
R Abbas, M Valdés, MJ Montes, JM Martínez-Val
Solar Energy 153, 459-470, 2017
342017
A new approach for the prediction of thermal efficiency in solar receivers
R Barbero, A Rovira, MJ Montes, JMM Val
Energy conversion and management 123, 498-511, 2016
302016
Análisis y propuestas de sistemas solares de alta exergía que emplean agua como fluido calorífero
MJ Montes
Univ. Politécnica de Madrid, Madrid, 2008
302008
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