关注
Francesco Crespi
Francesco Crespi
在 us.es 的电子邮件经过验证
标题
引用次数
引用次数
年份
Supercritical carbon dioxide cycles for power generation: A review
F Crespi, G Gavagnin, D Sánchez, GS Martínez
Applied energy 195, 152-183, 2017
6742017
Analysis of the thermodynamic potential of supercritical carbon dioxide cycles: a systematic approach
F Crespi, G Gavagnin, D Sánchez, GS Martínez
Journal of Engineering for Gas Turbines and Power 140 (5), 051701, 2018
702018
A thermo-economic methodology to select sCO2 power cycles for CSP applications
F Crespi, D Sánchez, JM Rodríguez, G Gavagnin
Renewable Energy 147, 2905-2912, 2020
512020
Effect of passing clouds on the dynamic performance of a CSP tower receiver with molten salt heat storage
F Crespi, A Toscani, P Zani, D Sánchez, G Manzolini
Applied Energy 229, 224-235, 2018
432018
Thermal efficiency gains enabled by using CO2 mixtures in supercritical power cycles
F Crespi, PR De Arriba, D Sánchez, A Ayub, G Di Marcoberardino, ...
Energy 238, 121899, 2022
402022
Potential of supercritical carbon dioxide power cycles to reduce the levelised cost of electricity of contemporary concentrated solar power plants
F Crespi, D Sánchez, GS Martínez, T Sánchez-Lencero, ...
Applied Sciences 10 (15), 5049, 2020
352020
Fundamental thermo-economic approach to selecting sCO2 power cycles for CSP applications
F Crespi, D Sánchez, JM Rodríguez, G Gavagnin
Energy Procedia 129, 963-970, 2017
352017
A new method for modelling off-design performance of sCO2 heat exchangers without specifying detailed geometry
K Hoopes, D Sánchez, F Crespi
Fifth Supercritical CO2 Power Cycles Symposium, 2016
322016
Capital cost assessment of concentrated solar power plants based on supercritical carbon dioxide power cycles
F Crespi, D Sánchez, T Sánchez, GS Martínez
Journal of Engineering for Gas Turbines and Power 141 (7), 071011, 2019
232019
Preliminary investigation on the adoption of CO2-SO2 working mixtures in a transcritical Recompression cycle
F Crespi, PR de Arriba, D Sánchez, A Muñoz
Applied Thermal Engineering 211, 118384, 2022
212022
Adoption of CO2 blended with C6F6 as working fluid in CSP plants
G Manzolini, M Binotti, E Morosini, D Sanchez, F Crespi, ...
AIP Conference Proceedings 2445 (1), 2022
182022
The potential of transcritical cycles based on CO2 mixtures: An exergy-based analysis
P Rodríguez-deArriba, F Crespi, D Sánchez, A Muñoz, T Sánchez
Renewable Energy 199, 1606-1628, 2022
172022
The conductance ratio method for off-design heat exchanger modeling and its impact on an sCO2 recompression cycle
F Crespi, D Sánchez, K Hoopes, B Choi, N Kuek
Turbo Expo: Power for Land, Sea, and Air 50961, V009T38A025, 2017
152017
Integral techno-economic analysis of supercritical carbon dioxide cycles for concentrated solar power
F Crespi, D Sánchez, T Sánchez, GS Martínez
Turbo Expo: Power for Land, Sea, and Air 51180, V009T38A026, 2018
132018
Thermo-economic assessment of supercritical CO2 power cycles for concentrated solar power plants
FM Crespi
122020
Axial turbine flow path design for concentrated solar power plants operating with CO2 blends
SI Salah, F Crespi, MT White, A Muñoz, A Paggini, M Ruggiero, ...
Applied thermal engineering 230, 120612, 2023
112023
Thermal efficiency gains enabled by using supercritical CO2 mixtures in Concentrated Solar Power applications
FM Crespi, P Rodriguez de Arriba, DT Sánchez Martínez, A Ayub, ...
4th European sCO2 Conference for Energy Systems, 2021
62021
The potential of supercritical cycles based on CO₂ mixtures in Concentrated Solar Power plants: an exergy-based analysis
FM Crespi, PE Rodríguez de Arriba, DT Sánchez Martínez, ...
., 2021
52021
Off-design of a CO2-based mixture transcritical cycle for CSP applications: Analysis at part load and variable ambient temperature
E Morosini, D Alfani, SI Salah, A Abdeldayem, F Crespi, ...
Applied Thermal Engineering 236, 121735, 2024
32024
Supercritical carbon dioxide cycles for concentrated solar power plants: A possible alternative for solar desalination
R González-Almenara, P Rodríguez de Arriba, F Crespi, D Sánchez, ...
Processes 10 (1), 72, 2021
32021
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