Search Results (All Fields:"efficiency", isMemberOf:"bibliuned:DptoIE-ETSI-Articulos")

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Marcos, Jose D., Lizarte, Raquel, Varela, Fernando, Palacios-Lorenzo, Maria E. y Blanco-Marigorta, Ana M. . (2018) A solar air-cooled high efficiency absorption system in dry hot climates: Reduction of water consumption and environmental impact.  5.61 50 12
D’Souza, D., Montes, M.J., Romero, M. y González-Aguilar, J. . (2023) Energy and exergy analysis of microchannel central solar receivers for pressurised fluids.  5.59 57 13
Montes, M.J., Guédez, R., D'Souza, D., Linares, J.I., González-Aguilar, J. y Romero, M. . (2023) Proposal of a new design of central solar receiver for pressurised gases and supercritical fluids.  5.59 43  
Montes, M.J., Guedez, R., Linares, J.I. y Reyes-Belmonte, M.A. . (2023) Advances in solar thermal power plants based on pressurised central receivers and supercritical power cycles.  5.59 65  
Montes, M.J., Abbas, Rubén, Barbero, Rubén y Rovira, Antonio . (2022) A new design of multi-tube receiver for Fresnel technology to increase the thermal performance.  5.56 42  
Rovira, Antonio, Barbero, Rubén, Montes, María José, Abbas, Rubén y Varela, Fernando . (2015) Analysis and comparison of Integrated Solar Combined Cycles using parabolic troughs and linear Fresnel reflectors as concentrating systems.  5.53 58 10
Rovira, Antonio, Muñoz Domínguez, Marta, Sánchez, Consuelo y Barbero, Rubén . (2020) Advanced thermodynamic cycles for finite heat sources: proposals for closed and open heat sources applications.  5.53 40 10
Montes, M.J., Stojceska, V., Reay, D. y Ibarra, M. . (2023) Proposal of a microchannel receiver for Fresnel technology to supply solar heat for industrial processes.  5.53 37  
Rovira, Antonio, Sánchez, Consuelo, Valdés, Manuel, Abbas, Ruben, Barbero, Rubén, Montes, María José, Muñoz, Marta, Muñoz-Antón, Javier, Ortega, Guillermo y Varela, Fernando . (2018) Comparison of Different Technologies for Integrated Solar Combined Cycles: Analysis of Concentrating Technology and Solar Integration.  5.52 50 11