sample of publications
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articles
- Solar simulator based on induction heating to characterize experimentally tubular solar central receivers. APPLIED THERMAL ENGINEERING. 220:1-14. 2023
- Non-conventional tube shapes for lifetime extend of solar external receivers. Renewable Energy. 186:535-546. 2022
- A procedure to predict solar receiver damage during transient conditions. RENEWABLE & SUSTAINABLE ENERGY REVIEWS. 154:1-17. 2022
- Assessment of the time resolution used to estimate the central solar receiver lifetime. APPLIED ENERGY. 301:1-19. 2021
- Material selection for solar central receiver tubes. SOLAR ENERGY MATERIALS AND SOLAR CELLS. 231:1-21. 2021
- Calculating molten-salt central-receiver lifetime under creep-fatigue damage. Solar Energy. 213:180-197. 2021
- Performance investigation of solar tower system using cascade supercritical carbon dioxide Brayton-steam Rankine cycle. ENERGY CONVERSION AND MANAGEMENT. 225:113430-1-113430-20. 2020
- Exergy analysis of solar central receivers. Solar Energy. 207:957-973. 2020
- Influence of longitudinal clips in thermal stresses and deflection in solar tubular receivers. Solar Energy. 198:224-238. 2020
- Deflection and Stresses in Solar Central Receivers. Solar Energy. 195:355-368. 2020
- Field-receiver model validation against Solar Two tests. RENEWABLE & SUSTAINABLE ENERGY REVIEWS. 110:43-52. 2019
- Development of a new method to estimate the incident solar flux on central receivers from deteriorated heliostats. Renewable Energy. 130:182-190. 2019
- Numerical model of solar external receiver tubes: Influence of mechanical boundary conditions and temperature variation in thermoelastic stresses. Solar Energy. 174:912-922. 2018
- Aiming factor to flatten the flux distribution on cylindrical receivers. Energy. 153:113-125. 2018
- Thermo-mechanical modelling of solar central receivers: effect of incident solar flux resolution. Solar Energy. 165:43-54. 2018
- Feasibility study of a new concept of solar external receiver: Variable velocity receiver. APPLIED THERMAL ENGINEERING. 128:335-344. 2018
- Aiming strategy model based on allowable flux densities for molten salt central receivers. Solar Energy. 157:1130-1144. 2017
- Thermodynamic and economic assessment of a new generation of subcritical and supercritical solar power towers. Energy. 118:534-544. 2017
- Experimental study of honeycomb SiCSi under highly concentrated solar flux: Evolution of its thermo-radiative properties. SOLAR ENERGY MATERIALS AND SOLAR CELLS. 155:253-263. 2016
- Flow patterns of external solar receivers. Solar Energy. 122:940-953. 2015
- Revised receiver efficiency of molten-salt power towers. RENEWABLE & SUSTAINABLE ENERGY REVIEWS. 52:1331-1339. 2015
- District cooling network connected to a solar power tower. APPLIED THERMAL ENGINEERING. 79:174-183. 2015
- Comparison of simplified heat transfer models and CFD simulations for molten salt external receiver. APPLIED THERMAL ENGINEERING. 73:993-1005. 2014
- Saving assessment using the PERS in solar power towers. ENERGY CONVERSION AND MANAGEMENT. 87:810-819. 2014
- Thermal design guidelines of solar power towers. APPLIED THERMAL ENGINEERING. 63:428-438. 2014
- Thermal, mechanical and hydrodynamic analysis to optimize the design of molten salt central receivers of solar tower power plants. Renewable Energy and Power Quality Journal. 1:128-133. 2013
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conference contributions
- Analysis of Functionally Graded Materials in the context of tubular solar central receivers. 616-619. 2023
- Functionally Graded Materials Application in Solar Central Receivers 2023
- Preliminary CFD simulations of a lab-scale novel design of a particle receiver for CSP applications 2023
- Spectrally Selective Multilayer Coating System to Improve the Thermo-Optical Properties of New-Designed Particle Receiver for Concentrated Solar Power Plant. 2023
- FluxSPT: Tool for heliostat field aiming and flux mapping in solar power tower plants. 120020-1-120020-8. 2022
- Lifecycle estimation for different solar central receiver configurations. 120015-1-120015-8. 2022
- Creep and fatigue damage assessment for molten-salt central receivers. 1-8. 2021
- Allowable solar flux densities for molten-salt receivers: Input to the aiming strategy. 1-9. 2020
- Elliptical tubes receivers efficiency analysis in solar power towers. 1-8. 2019
- Solar power tower plants receiver design studying the entropy of the receiver's tubes 2019
- Thermal stress variation in a solar central receiver during daily operation. 030038-1-030038-6. 2019
- Aiming strategy for molten salt receivers. 2-7. 2018
- Análisis de la eficiencia del receptor con nuevos tubos de geometría elíptica en centrales termosolares tipo torre. 217-224. 2018
- Effect of eccentricity on the hydrodynamics and heat transfer of molten salt in bayonet receivers for solar power towers. 1-9. 2018
- Influencia de los soportes longitudinales en los tubos de los receptores solares térmicos. 301-308. 2018
- Influencia de los soportes longitudinales en los tubos de los receptores solares térmicos. 301-307. 2018
- Thermal and mechanical stresses in a solar central receiver. 528-532. 2018
- Eccentric bayonet receiver for solar power tower. 1-8. 2017
- Variable velocity in solar external receivers. 030043-1-030043-8. 2017
- District cooling using central tower power plant. 1800-1809. 2014
- New designs of molten-salt tubular-receiver for solar power tower. 504-513. 2014
- Nuevo diseño de receptores para centrales termosolares tipo torre: receptor bayoneta. 965-973. 2013
- Thermal, mechanical and hydraulic analysis to optimize the design of molten salt central receivers of solar tower power plants 2013
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theses