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A cascaded thermochemical energy storage system enabling performance enhancement of concentrated solar power plants. (2024). Lu, Yupeng ; Xuan, Yimin ; Teng, Liang ; Liu, Jingrui ; Wang, Busheng.
In: Energy.
RePEc:eee:energy:v:288:y:2024:i:c:s0360544223031432.

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  1. Composite based on lithium chloride and highly porous silica gel for adsorptive heat storage systems. (2025). Cherpakova, A V ; Grekova, A D ; Gordeeva, L G.
    In: Energy.
    RePEc:eee:energy:v:321:y:2025:i:c:s0360544225010771.

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  2. Design, off-design and operation study of concentrating solar power system with calcium-looping thermochemical energy storage and photovoltaic-driven compressed CO2 energy storage. (2024). Wei, Jinjia ; Sun, Jie ; Zhang, Chaobo ; Qiao, Yang.
    In: Energy.
    RePEc:eee:energy:v:312:y:2024:i:c:s0360544224034650.

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  3. Numerical modeling and performance analysis of an open sorption energy storage system based on zeolite/water in building heating. (2024). Shen, Yongliang ; Li, Yongliang ; Wang, Yihan ; Liu, Shuli ; Deng, Shihan ; Yang, Liu.
    In: Energy.
    RePEc:eee:energy:v:306:y:2024:i:c:s0360544224022047.

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  14. Analysis of a thermochemical energy storage system based on the reversible Ca(OH)2/CaO reaction. (2022). Chacartegui, R ; Becerra, J A ; Ortiz, C ; Carro, A.
    In: Energy.
    RePEc:eee:energy:v:261:y:2022:i:pa:s0360544222019594.

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  15. A review on integrated design and off-design operation of solar power tower system with S–CO2 Brayton cycle. (2022). Yang, Zhen ; Duan, Yuanyuan.
    In: Energy.
    RePEc:eee:energy:v:246:y:2022:i:c:s0360544222002511.

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  16. Design and 3E analysis of a hybrid power plant integrated with a single-effect absorption chiller driven by a heliostat field: A case study for Doha, Qatar. (2022). Nedaei, Navid ; Farshi, Garousi L ; Hamrang, Farzad.
    In: Energy.
    RePEc:eee:energy:v:239:y:2022:i:pd:s0360544221026645.

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  17. Preliminary investigation of the influence of equations of state on the performance of CO2 + C6F6 as innovative working fluid in transcritical cycles. (2022). Manzolini, G ; di Marcoberardino, G ; Morosini, E.
    In: Energy.
    RePEc:eee:energy:v:238:y:2022:i:pb:s0360544221020636.

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  18. Concentrating Solar Power Advances in Geometric Optics, Materials and System Integration. (2021). Arnaoutakis, Georgios E ; al Katsaprakakis, Dimitris.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:19:p:6229-:d:646967.

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  19. Effect of Two Different Heat Transfer Fluids on the Performance of Solar Tower CSP by Comparing Recompression Supercritical CO 2 and Rankine Power Cycles, China. (2021). Bekun, Festus ; Adebayo, Tomiwa ; Kumar, Nallapaneni Manoj ; Panjwani, Manoj Kumar ; Agyekum, Ephraim Bonah.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:12:p:3426-:d:572363.

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  20. The Potential Use of Fly Ash from the Pulp and Paper Industry as Thermochemical Energy and CO 2 Storage Material. (2021). Jahromy, Saman Setoodeh ; Azam, Mudassar ; Harasek, Michael ; Winter, Franz ; Jordan, Christian.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:11:p:3348-:d:570325.

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  21. Off-design performance analysis of combined CSP power and direct oxy-combustion supercritical carbon dioxide cycles. (2021). Al-Ammari, Wahib A ; Sleiti, Ahmad K.
    In: Renewable Energy.
    RePEc:eee:renene:v:180:y:2021:i:c:p:14-29.

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  22. Waste heat recovery of a combined regenerative gas turbine - recompression supercritical CO2 Brayton cycle driven by a hybrid solar-biomass heat source for multi-generation purpose: 4E analysis and parametric study. (2021). Cao, Yan ; Zoghi, Mohammad ; Habibi, Hamed ; Raise, Amir.
    In: Energy.
    RePEc:eee:energy:v:236:y:2021:i:c:s0360544221016807.

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  23. Thermodynamic and economic comparison of novel parallel and serial combined cooling and power systems based on sCO2 cycle. (2021). Dai, Yiping ; Du, Yang ; Zheng, Shaoxiong ; Chen, Kang ; Fan, Gang.
    In: Energy.
    RePEc:eee:energy:v:215:y:2021:i:pa:s0360544220321150.

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  24. A unified ecological assessment of a solar concentrating plant based on an integrated approach joining cosmic exergy analysis with ecological indicators. (2020). Hayat, Tasawar ; Yang, Qing ; Wang, Ping ; Chen, Guoqian ; Li, Chaohui ; Alsaedi, Ahmed ; Fan, Ying ; Wu, Xudong.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:129:y:2020:i:c:s1364032120302252.

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  25. Energy and exergy analysis of the integration of concentrated solar power with calcium looping for power production and thermochemical energy storage. (2020). Voutetakis, Spyros ; Papadopoulou, Simira ; Panopoulos, Kyriakos D ; Karasavvas, Evgenios.
    In: Renewable Energy.
    RePEc:eee:renene:v:154:y:2020:i:c:p:743-753.

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  26. Parametric study and optimization of closed Brayton power cycle considering the charge amount of working fluid. (2020). Kim, Sunjin.
    In: Energy.
    RePEc:eee:energy:v:198:y:2020:i:c:s0360544220304606.

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  27. Thermodynamic analysis of solar powered triple combined Brayton, Rankine and organic Rankine cycle for carbon free power. (2019). Singh, Onkar ; Sachdeva, Jatin.
    In: Renewable Energy.
    RePEc:eee:renene:v:139:y:2019:i:c:p:765-780.

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  28. Off-design performance of the supercritical carbon dioxide recompression Brayton cycle with NDDCT cooling for concentrating solar power. (2019). Duniam, Sam ; Veeraragavan, Ananthanarayanan.
    In: Energy.
    RePEc:eee:energy:v:187:y:2019:i:c:s036054421931686x.

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  29. Optimal integration of recompression supercritical CO2 Brayton cycle with main compression intercooling in solar power tower system based on exergoeconomic approach. (2019). Ma, Yuegeng ; Morozyuk, Tatiana ; Liu, Ming ; Yan, Junjie.
    In: Applied Energy.
    RePEc:eee:appene:v:242:y:2019:i:c:p:1134-1154.

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  30. A comprehensive review on the exergy analysis of combined cycle power plants. (2018). Awad, Omar I ; Mohammed, Mohammed Kamil ; Najafi, G ; Basrawi, Firdaus ; Abdalla, Ahmed N ; Ibrahim, Thamir K ; Mamat, Rizalman.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:90:y:2018:i:c:p:835-850.

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  31. Thermoeconomic analysis of a gas turbine and cascaded CO2 combined cycle using thermal oil as an intermediate heat-transfer fluid. (2018). Cao, Yue ; Dai, Yiping ; Rattner, Alexander S.
    In: Energy.
    RePEc:eee:energy:v:162:y:2018:i:c:p:1253-1268.

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  32. Proposal and assessment of a novel supercritical CO2 Brayton cycle integrated with LiBr absorption chiller for concentrated solar power applications. (2018). Ma, Yuegeng ; Zhang, Xuwei ; Liu, Ming ; Yan, Junjie.
    In: Energy.
    RePEc:eee:energy:v:148:y:2018:i:c:p:839-854.

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  33. Techno-economic assessment of Joule-Brayton cycle architectures for heat to power conversion from high-grade heat sources using CO2 in the supercritical state. (2018). Tassou, Savvas A ; Marchionni, Matteo ; Bianchi, Giuseppe.
    In: Energy.
    RePEc:eee:energy:v:148:y:2018:i:c:p:1140-1152.

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  34. Characteristics and optimization of supercritical CO2 recompression power cycle and the influence of pinch point temperature difference of recuperators. (2018). Cho, Yeonjoo ; Kim, Sunjin.
    In: Energy.
    RePEc:eee:energy:v:147:y:2018:i:c:p:1216-1226.

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  35. Off-design analysis of a Hybrid Rankine-Brayton cycle used as the power block of a solar thermal power plant. (2017). Muoz, Marta ; Montes, Maria Jose ; Sanchez, Consuelo ; Rovira, Antonio.
    In: Energy.
    RePEc:eee:energy:v:134:y:2017:i:c:p:369-381.

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  36. Supercritical carbon dioxide cycles for power generation: A review. (2017). Martinez, Gonzalo S ; Gavagnin, Giacomo ; Crespi, Francesco ; Sanchez, David.
    In: Applied Energy.
    RePEc:eee:appene:v:195:y:2017:i:c:p:152-183.

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