create a website

Integration schemes for hybrid and polygeneration concentrated solar power plants. (2021). Escobar, Rodrigo ; Cardemil, Jose M ; Matatorres, Carlos ; Starke, Allan R ; Zurita, Adriana.
In: Wiley Interdisciplinary Reviews: Energy and Environment.
RePEc:bla:wireae:v:10:y:2021:i:6:n:e412.

Full description at Econpapers || Download paper

Cited: 3

Citations received by this document

Cites: 110

References cited by this document

Cocites: 37

Documents which have cited the same bibliography

Coauthors: 0

Authors who have wrote about the same topic

Citations

Citations received by this document

  1. Realizing the promise of concentrating solar power for thermal desalination: A review of technology configurations and optimizations. (2025). Asfand, Faisal ; Khan, Muhammad Imran ; Pesyridis, Apostolos ; Farooq, Muhammad ; Bicer, Yusuf ; Al-Ghamdi, Sami G.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:208:y:2025:i:c:s1364032124007482.

    Full description at Econpapers || Download paper

  2. Assessing the performance of novel molten salt mixtures on CSP applications. (2024). , Vinicius ; Escobar, Rodrigo ; Castro-Quijada, Matias ; Cardemil, Jose M ; Videla, Alvaro ; Starke, Allan R.
    In: Applied Energy.
    RePEc:eee:appene:v:359:y:2024:i:c:s0306261924000722.

    Full description at Econpapers || Download paper

  3. Investigation of seasonal variations and multiple fuel options in a novel tri-generation CSP integrated hybrid energy process. (2022). Alnouri, Sabla Y ; Klaimi, Rachid ; Stijepovi, Mirko.
    In: Energy.
    RePEc:eee:energy:v:261:y:2022:i:pb:s0360544222022216.

    Full description at Econpapers || Download paper

References

References cited by this document

  1. Abdelhay, A. O., Fath, H. E., & Nada, S. A. (2020). Solar driven polygeneration system for power, desalination and cooling. Energy, 198, 117341.

  2. Aboelmaaref, M. M., Zayed, M. E., Zhao, J., Li, W., Askalany, A. A., Salem Ahmed, M., & Ali, E. S. (2020). Hybrid solar desalination systems driven by parabolic trough and parabolic dish CSP technologies: Technology categorization, thermodynamic performance and economical assessment. Energy Conversion and Management, 220(6), 113103.
    Paper not yet in RePEc: Add citation now
  3. Aichmayer, L., Spelling, J., & Laumert, B. (2014). Small scale hybrid solar power plants for polygeneration in rural areas. Energy Procedia, 57, 1536–1545.
    Paper not yet in RePEc: Add citation now
  4. Al‐Ali, M., & Dincer, I. (2014). Energetic and exergetic studies of a multigenerational solar‐geothermal system. Applied Thermal Engineering, 71(1), 16–23.
    Paper not yet in RePEc: Add citation now
  5. Al‐Karaghouli, A., & Kazmerski, L. L. (2013). Energy consumption and water production cost of conventional and renewable‐energy‐powered desalination processes. Renewable and Sustainable Energy Reviews, 24, 343–356.
    Paper not yet in RePEc: Add citation now
  6. Alvarenga, Y., Handal, S., & Recinos, M. (2008). Solar steam booster in the Ahuachapán geothermal field. Geothermal Resources Council, 32, 395–400.
    Paper not yet in RePEc: Add citation now
  7. Bai, Z., Liu, Q., Lei, J., Li, H., & Jin, H. (2015). A polygeneration system for the methanol production and the power generation with the solar‐biomass thermal gasification. Energy Conversion and Management, 102, 190–201.
    Paper not yet in RePEc: Add citation now
  8. Baykara, S. Z. (2004). Hydrogen production by direct solar thermal decomposition of water, possibilities for improvement of process efficiency. International Journal of Hydrogen Energy, 29, 1451–1458.
    Paper not yet in RePEc: Add citation now
  9. Borunda, M., Jaramillo, O. A., Dorantes, R., & Reyes, A. (2016). Organic rankine cycle coupling with a parabolic trough solar power plant for cogeneration and industrial processes. Renewable Energy, 86, 651–663.

  10. Buck, R., & Friedmann, S. (2007). Solar‐assisted small solar tower trigeneration systems. Journal of Solar Energy Engineering, Transactions of the ASME, 129(4), 349–354.
    Paper not yet in RePEc: Add citation now
  11. Burin, E. K., Buranello, L., Giudice, P. L., Vogel, T., Görner, K., & Bazzo, E. (2015). Boosting power output of a sugarcane bagasse cogeneration plant using parabolic trough collectors in a feedwater heating scheme. Applied Energy, 154, 232–241.

  12. Calise, F., Dentice d'Accadia, M., Vanoli, R., & Vicidomini, M. (2019). Transient analysis of solar polygeneration systems including seawater desalination: A comparison between linear Fresnel and evacuated solar collectors. Energy, 172, 647–660.

  13. Calise, F., Macaluso, A., Piacentino, A., & Vanoli, L. (2017). A novel hybrid polygeneration system supplying energy and desalinated water by renewable sources in Pantelleria Island. Energy, 137, 1086–1106.

  14. Cardemil, J. M., Cortés, F., & Díaz, A. (2016). Thermodynamic evaluation of solar‐geothermal hybrid power plants in northern Chile. Energy Conversion and Management, 123, 348–361.
    Paper not yet in RePEc: Add citation now
  15. Cocco, D., Migliari, L., & Petrollese, M. (2016). A hybrid CSP‐CPV system for improving the dispatchability of solar power plants. Energy Conversion and Management, 114, 312–323.
    Paper not yet in RePEc: Add citation now
  16. Corona, B., & San Miguel, G. (2015). Environmental analysis of a concentrated solar power (CSP) plant hybridised with different fossil and renewable fuels. Fuel, 145, 63–69.
    Paper not yet in RePEc: Add citation now
  17. Dabwan, Y. N., Gang, P., Li, J., Gao, G., & Feng, J. (2018). Development and assessment of integrating parabolic trough collectors with gas turbine trigeneration system for producing electricity, chilled water, and freshwater. Energy, 162, 364–379.

  18. Díaz, E., Epstein, M., Romero, M., & Gonzalez‐Aguilar, J. (2018). Performance assessment of concentrated solar power plants based on carbon and hydrogen fuel cells. International Journal of Hydrogen Energy, 43, 5852–5862.
    Paper not yet in RePEc: Add citation now
  19. Escobar, R. A., Cortés, C., Pino, A., Salgado, M., Pereira, E. B., Martins, F. R., Boland, J., & Cardemil, J. M. (2015). Estimating the potential for solar energy utilization in Chile by satellite‐derived data and ground station measurements. Solar Energy, 121, 139–151.
    Paper not yet in RePEc: Add citation now
  20. Ezzat, M. F., & Dincer, I. (2016). Energy and exergy analyses of a new geothermal‐solar energy based system. Solar Energy, 134, 95–106.
    Paper not yet in RePEc: Add citation now
  21. Furler, P., Sche, J., Gorbar, M., Moes, L., Vogt, U., & Steinfeld, A. (2012). Solar thermochemical CO2 splitting utilizing a reticulated porous ceria redox system. Energy & Fuels, 26, 7051–7059.
    Paper not yet in RePEc: Add citation now
  22. Gauché, P., Rudman, J., Mabaso, M., Landman, W. A., von Backström, T. W., & Brent, A. C. (2017). System value and progress of CSP. Solar Energy, 152, 106–139.
    Paper not yet in RePEc: Add citation now
  23. Ghasemi, H., Sheu, E., Tizzanini, A., Paci, M., & Mitsos, A. (2014). Hybrid solar—Geothermal power generation: Optimal retrofitting. Applied Energy, 131, 158–170.
    Paper not yet in RePEc: Add citation now
  24. Green, A., Diep, C., Dunn, R., & Dent, J. (2015). High capacity factor CSP‐PV hybrid systems. Energy Procedia, 69, 2049–2059.
    Paper not yet in RePEc: Add citation now
  25. Greenhut, A. D., Tester, J. W., Dipippo, R., Field, R., Love, C., Nichols, K., Augustine, C., Batini, F., Price, B., Gigliucci, G., & Fastelli, I. (2010). Solar‐geothermal hybrid cycle analysis for low enthalpy solar and geothermal resources. In Proceedings World Geothermal Congress 2010 (pp. 25–29). Bali, Indonesia: International Geothermal Association.
    Paper not yet in RePEc: Add citation now
  26. Hanel, M., & Escobar, R. (2013). In fluence of solar energy resource assessment uncertainty in the levelized electricity cost of concentrated solar power plants in Chile. Renewable Energy, 49, 96–100.

  27. Hirsch, T. (2017). SolarPACES guideline for bankable STE yield assessment (Tech.Rep.). IEA Technology Collaboration Programme SolarPACES, Tabernas, Spain.
    Paper not yet in RePEc: Add citation now
  28. Hou, H., Xu, Z., & Yang, Y. (2016). An evaluation method of solar contribution in a solar aided power generation (SAPG) system based on exergy analysis. Applied Energy, 182, 1–8.

  29. Iaquaniello, G., Salladini, A., Mari, A., Mabrouk, A. A., & Fath, H. E. S. (2014). Concentrating solar power (CSP) system integrated with MED‐RO hybrid desalination. Desalination, 336, 121–128.
    Paper not yet in RePEc: Add citation now
  30. International Energy Agency. (2010). Technology roadmap: Concentrating solar power (Tech. Rep.). International Energy Agency, Paris, France.
    Paper not yet in RePEc: Add citation now
  31. International Energy Agency. (2014). Technology roadmap: Solar thermal electricity (Tech. Rep.). International Energy Agency, Paris, France.
    Paper not yet in RePEc: Add citation now
  32. Islam, M. T., Huda, N., Abdullah, A. B., & Saidur, R. (2018). A comprehensive review of state‐of‐the‐art concentrating solar power (CSP) technologies: Current status and research trends. Renewable and Sustainable Energy Reviews, 91(11), 987–1018.

  33. Islam, S., & Dincer, I. (2017). Development, analysis and performance assessment of a combined solar and geothermal energy‐based integrated system for multigeneration. Solar Energy, 147, 328–343.
    Paper not yet in RePEc: Add citation now
  34. Jacobson, M. Z. (2021). 100% clean, renewable energy and storage for everything (1st ed.). Cambridge University Press.
    Paper not yet in RePEc: Add citation now
  35. Jenkins, N., & Ekanayake, J. (2017). Rennewable energy engineering (1st ed.). Cambridge University Press.
    Paper not yet in RePEc: Add citation now
  36. Jiang, P. X., Zhang, F. Z., & Xu, R. N. (2017). Thermodynamic analysis of a solar–enhanced geothermal hybrid power plant using CO2 as working fluid. Applied Thermal Engineering, 116, 463–472.
    Paper not yet in RePEc: Add citation now
  37. Kanoglu, M., Çengel, Y. A., & Cimbala, J. M. (2020). Fundamentals and applications of renewable energy (1st ed.). McGraw Hill.
    Paper not yet in RePEc: Add citation now
  38. Khalid, F., Dincer, I., & Rosen, M. A. (2016). Techno‐economic assessment of a renewable energy based integrated multigeneration system for green buildings. Applied Thermal Engineering, 99, 1286–1294.
    Paper not yet in RePEc: Add citation now
  39. Laissaoui, M., Palenzuela, P., Sharaf Eldean, M. A., Nehari, D., & Alarcón‐Padilla, D.‐C. (2018). Techno‐economic analysis of a stand‐alone solar desalination plant at variable load conditions. Applied Thermal Engineering, 133(10), 659–670.
    Paper not yet in RePEc: Add citation now
  40. Leiva‐Illanes, R., Escobar, R., Cardemil, J. M., & Alarcón‐Padilla, D.C. (2017). Thermoeconomic assessment of a solar polygeneration plant for electricity, water, cooling and heating in high direct normal irradiation conditions. Energy Conversion and Management, 151(8), 538–552.
    Paper not yet in RePEc: Add citation now
  41. Leiva‐Illanes, R., Escobar, R., Cardemil, J. M., Alarcón‐Padilla, D.‐C., Uche, J., & Martínez, A. (2019). Exergy cost assessment of CSP driven multi‐generation schemes: Integrating seawater desalination, refrigeration, and process heat plants. Energy Conversion and Management, 179(6), 249–269.
    Paper not yet in RePEc: Add citation now
  42. Lentz, Á., & Almanza, R. (2006). Solar‐geothermal hybrid system. Applied Thermal Engineering, 26(14–15), 1537–1544.
    Paper not yet in RePEc: Add citation now
  43. Li, K., Liu, C., Jiang, S., & Chen, Y. (2020). Review on hybrid geothermal and solar power systems. Journal of Cleaner Production, 250, 119481.
    Paper not yet in RePEc: Add citation now
  44. Liu, H., Zhai, R., Fu, J., Wang, Y., & Yang, Y. (2019). Optimization study of thermal‐storage PV‐CSP integrated system based on GA‐PSO algorithm. Solar Energy, 184(4), 391–409.
    Paper not yet in RePEc: Add citation now
  45. Liu, M., Steven Tay, N. H., Bell, S., Belusko, M., Jacob, R., Will, G., Saman, W., & Bruno, F. (2016). Review on concentrating solar power plants and new developments in high temperature thermal energy storage technologies. Renewable and Sustainable Energy Reviews, 53, 1411–1432.

  46. Liu, Q., Bai, Z., Wang, X., Lei, J., & Jin, H. (2016). Investigation of thermodynamic performances for two solar‐biomass hybrid combined cycle power generation systems. Energy Conversion and Management, 122, 252–262.
    Paper not yet in RePEc: Add citation now
  47. Luqman, M., & Al‐ansari, T. (2020). Thermodynamic analysis of an energy‐water‐food (Ewf) nexus driven polygeneration system applied to coastal communities. Energy Conversion and Management, 205(1), 112432.
    Paper not yet in RePEc: Add citation now
  48. Luqman, M., Bicer, Y., & Al‐ansari, T. (2020). ScienceDirect thermodynamic analysis of an oxy‐hydrogen combustor supported solar and wind energy‐based sustainable polygeneration system for remote locations. International Journal of Hydrogen Energy, 45, 3470–3483.
    Paper not yet in RePEc: Add citation now
  49. Makkeh, S. A., Ahmadi, A., Esmaeilion, F., & Ehyaei, M. A. (2020). Energy, exergy and exergoeconomic optimization of a cogeneration system integrated with parabolic trough collector‐wind turbine with desalination. Journal of Cleaner Production, 273, 123122.
    Paper not yet in RePEc: Add citation now
  50. Mata‐Torres, C., Escobar, R., Cardemil, J. M., Simsek, Y., & Matute, J. A. (2017). Solar polygeneration for electricity production and desalination: Case studies in Venezuela and northern Chile. Renewable Energy, 101, 387–398.

  51. Mata‐Torres, C., Palenzuela, P., Zurita, A., Cardemil, J. M., Alarcón‐Padilla, D.‐C., & Escobar, R. A. (2020). Annual thermoeconomic analysis of a concentrating solar power + photovoltaic + multi‐effect distillation plant in northern Chile. Energy Conversion and Management, 213(6), 112852.
    Paper not yet in RePEc: Add citation now
  52. McDonald, C. (1986). A hybrid solar closed‐cycle gas turbine combined heat and power plant concept to meet the continuous total energy needs of a small community. Heat Recovery Systems, 6(5), 399–419.
    Paper not yet in RePEc: Add citation now
  53. Mehrpooya, M., Ghorbani, B., & Hosseini, S. S. (2018). Thermodynamic and economic evaluation of a novel concentrated solar power system integrated with absorption refrigeration and desalination cycles. Energy Conversion and Management, 175(9), 337–356.
    Paper not yet in RePEc: Add citation now
  54. Mohammadi, K., & McGowan, J. G. (2018). Thermodynamic analysis of hybrid cycles based on a regenerative steam Rankine cycle for cogeneration and trigeneration. Energy Conversion and Management, 158, 460–475.
    Paper not yet in RePEc: Add citation now
  55. Mohammadi, K., Saghafifar, M., Ellingwood, K., & Powell, K. (2019). Hybrid concentrated solar power (CSP)‐desalination systems: A review. Desalination, 468(7), 114083.
    Paper not yet in RePEc: Add citation now
  56. Mokheimer, E. M., Dabwan, Y. N., & Habib, M. A. (2015). Performance comparative analysis of three different CSP technologies integrated with gas turbine cogeneration Systems in Saudi Arabia. Energy Procedía, 75, 527–532.
    Paper not yet in RePEc: Add citation now
  57. Mokheimer, E. M., Dabwan, Y. N., & Habib, M. A. (2017). Optimal integration of solar energy with fossil fuel gas turbine cogeneration plants using three different CSP technologies in Saudi Arabia. Applied Energy, 185, 1268–1280.

  58. Morrone, P., Algieri, A., & Castiglione, T. (2019). Hybridisation of biomass and concentrated solar power systems in transcritical organic Rankine cycles: A micro combined heat and power application. Energy Conversion and Management, 180(7), 757–768.
    Paper not yet in RePEc: Add citation now
  59. Nathan, G., Jafarian, M., Dally, B., Saw, W., Ashman, P., Hu, E., & Steinfeld, A. (2018). Solar thermal hybrids for combustion power plant: A growing opportunity. Progress in Energy and Combustion Science, 64, 4–28.
    Paper not yet in RePEc: Add citation now
  60. Nazari, N., & Porkhial, S. (2020). Multi‐objective optimization and exergo‐economic assessment of a solar‐biomass multigeneration system based on externally‐fired gas turbine, steam and organic Rankine cycle, absorption chiller and multieffect desalination. Applied Thermal Engineering, 179(9), 115521.
    Paper not yet in RePEc: Add citation now
  61. Nixon, J. D., Dey, P. K., & Davies, P. A. (2012). The feasibility of hybrid solar‐biomass power plants in India. Energy, 46(1), 541–554.
    Paper not yet in RePEc: Add citation now
  62. Omar, A., Nashed, A., Li, Q., Leslie, G., & Taylor, R. A. (2020). Pathways for integrated concentrated solar power—Desalination: A critical review. Renewable and Sustainable Energy Reviews, 119(11), 109609.
    Paper not yet in RePEc: Add citation now
  63. Ortega‐Delgado, B., Cornali, M., Palenzuela, P., & Alarcón‐Padilla, D. C. (2017). Operational analysis of the coupling between a multi‐effect distillation unit with thermal vapor compression and a Rankine cycle power block using variable nozzle thermocompressors. Applied Energy, 204, 690–701.

  64. Ortega‐Delgado, B., Palenzuela, P., & Alarcón Padilla, D.‐C. (2016). Parametric study of a multi‐effect distillation plant with thermal vapor compression for its integration into a Rankine cycle power block. Desalination, 394, 18–29.
    Paper not yet in RePEc: Add citation now
  65. Oyekale, J., Petrollese, M., & Cau, G. (2020). Modified auxiliary exergy costing in advanced exergoeconomic analysis applied to a hybrid solar‐biomass organic Rankine cycle plant. Applied Energy, 268(1), 114888.

  66. Oyekale, J., Petrollese, M., Heberle, F., Brüggemann, D., & Cau, G. (2020). Exergetic and integrated exergoeconomic assessments of a hybrid solar‐biomass organic Rankine cycle cogeneration plant. Energy Conversion and Management, 215(5), 112905.
    Paper not yet in RePEc: Add citation now
  67. Ozlu, S., & Dincer, I. (2015). Development and analysis of a solar and wind energy based multigeneration system. Solar Energy, 122, 1279–1295.
    Paper not yet in RePEc: Add citation now
  68. Palenzuela, P., Zaragoza, G., & Alarcón‐Padilla, D. C. (2015). Characterisation of the coupling of multi‐effect distillation plants to concentrating solar power plants. Energy, 82, 986–995.

  69. Pan, C. A., & Dinter, F. (2017). Combination of PV and central receiver CSP plants for base load power generation in South Africa. Solar Energy, 146, 379–388.
    Paper not yet in RePEc: Add citation now
  70. Panchal, S., Dincer, I., & Agelin‐Chaab, M. (2016). Analysis and evaluation of a new renewable energy based integrated system for residential applications. Energy and Buildings, 128, 900–910.
    Paper not yet in RePEc: Add citation now
  71. Pantaleo, A. M., Camporeale, S. M., Miliozzi, A., Russo, V., Shah, N., & Markides, C. N. (2017). Novel hybrid CSP‐biomass CHP for flexible generation: Thermo‐economic analysis and profitability assessment. Applied Energy, 147, 2913–2931.
    Paper not yet in RePEc: Add citation now
  72. Parrado, C., Girard, A., Simon, F., & Fuentealba, E. (2016). 2050 LCOE (levelized cost of energy) projection for a hybrid PV (photovoltaic)‐CSP (concentrated solar power) plant in the Atacama Desert, Chile. Energy, 94, 422–430.

  73. Peterseim, J. H., Hellwig, U., Tadros, A., & White, S. (2014). Hybridisation optimization of concentrating solar thermal and biomass power generation facilities. Solar Energy, 99, 203–214.
    Paper not yet in RePEc: Add citation now
  74. Petrollese, M., & Cocco, D. (2016). Optimal design of a hybrid CSP‐PV plant for achieving the full dispatchability of solar energy power plants. Solar Energy, 137, 477–489.
    Paper not yet in RePEc: Add citation now
  75. Petrollese, M., & Cocco, D. (2020). Techno‐economic assessment of hybrid CSP‐biogas power plants. Renewable Energy, 155, 420–431.
    Paper not yet in RePEc: Add citation now
  76. Pizzolato, A., Donato, F., Verda, V., Santarelli, M., & Sciacovelli, A. (2017). CSP plants with thermocline thermal energy storage and integrated steam generator—Techno‐economic modeling and design optimization. Energy, 139, 231–246.

  77. Powell, K. M., Rashid, K., Ellingwood, K., Tuttle, J., & Iverson, B. D. (2017). Hybrid concentrated solar thermal power systems: A review. Renewable and Sustainable Energy Reviews, 80(5), 215–237.

  78. Pramanik, S., & Ravikrishna, R. V. (2016). A novel syngas‐fired hybrid heating source for solar‐thermal applications: Energy and exergy analysis. Applied Thermal Engineering, 109, 1011–1022.
    Paper not yet in RePEc: Add citation now
  79. Pramanik, S., & Ravikrishna, R. V. (2017). A review of concentrated solar power hybrid technologies. Applied Thermal Engineering, 127, 602–637.
    Paper not yet in RePEc: Add citation now
  80. Quiñones, G., Felbol, C., Valenzuela, C., Cardemil, J. M., & Escobar, R. A. (2020). Analyzing the potential for solar thermal energy utilization in the Chilean copper mining industry. Solar Energy, 197(1), 292–310.
    Paper not yet in RePEc: Add citation now
  81. Ravelli, S., Franchini, G., & Perdichizzi, A. (2018). Comparison of different CSP technologies for combined power and cooling production. Renewable Energy, 121, 712–721.

  82. REN21 (2020). Renewables 2020 global status report (Tech. Rep.). Renewable Energy Policy Network for the 21st Century—Secretariat, Paris, France.
    Paper not yet in RePEc: Add citation now
  83. Romero, M., & González‐Aguilar, J. (2014). Solar thermal CSP technology. WIREs Energy and Environment, 3(1), 42–59.

  84. Rovense, F., Amelio, M., Scornaienchi, N. M., & Ferraro, V. (2017). Performance analysis of a solar‐only gas micro turbine, with mass flow control. Energy Procedia, 126, 675–682.
    Paper not yet in RePEc: Add citation now
  85. Rovense, F., Reyes‐Belmonte, M. A., González‐Aguilar, J., Amelio, M., Bova, S., & Romero, M. (2019). Flexible electricity dispatch for CSP plant using un‐fired closed air Brayton cycle with particles based thermal energy storage system. Energy, 173, 971–984.

  86. Sahoo, U., Kumar, R., Pant, P. C., & Chaudhury, R. (2015). Scope and sustainability of hybrid solar‐biomass power plant with cooling, desalination in polygeneration process in India. Renewable and Sustainable Energy Reviews, 51(5), 304–316.
    Paper not yet in RePEc: Add citation now
  87. Sahoo, U., Kumar, R., Singh, S. K., & Tripathi, A. K. (2018). Energy, exergy, economic analysis and optimization of polygeneration hybrid solar‐biomass system. Applied Thermal Engineering, 145(8), 685–692.
    Paper not yet in RePEc: Add citation now
  88. San Miguel, G., & Corona, B. (2018). Economic viability of concentrated solar power under different regulatory frameworks in Spain. Renewable and Sustainable Energy Reviews, 91(6), 205–218.

  89. Sarmiento, C., Cardemil, J. M., Díaz, A. J., & Barraza, R. (2018). Parametrized analysis of a carbon dioxide transcritical Rankine cycle driven by solar energy. Applied Thermal Engineering, 140(12), 580–592.
    Paper not yet in RePEc: Add citation now
  90. Sattler, C., Roeb, M., Agrafiotis, C., & Thomey, D. (2017). Solar hydrogen production via sulphur based thermochemical. Solar Energy, 156, 30–47.
    Paper not yet in RePEc: Add citation now
  91. Sharan, P., Neises, T., Mctigue, J. D., & Turchi, C. (2019). Cogeneration using multi‐effect distillation and a solar‐powered supercritical carbon dioxide Brayton cycle. Desalination, 459, 20–33.
    Paper not yet in RePEc: Add citation now
  92. Starke, A. R., Cardemil, J. M., Escobar, R. A., & Colle, S. (2016). Assessing the performance of hybrid CSP+PV plants in northern Chile. Solar Energy, 138, 88–97.
    Paper not yet in RePEc: Add citation now
  93. Starke, A. R., Cardemil, J. M., Escobar, R., & Colle, S. (2018). Multi‐objective optimization of hybrid CSP+PV system using genetic algorithm. Energy, 147, 490–503.

  94. Steinmann, W.‐D. (2012). Thermal energy storage system for concentrating solar power (CSP) plants. In K. Lovegrove & W. Stein (Eds.), Concentrating solar power technology principles, developments and applications. Thermal (1st ed., pp. 362–394). Woodhead Publishing Limited.
    Paper not yet in RePEc: Add citation now
  95. Suleman, F., Dincer, I., & Agelin‐Chaab, M. (2014). Development of an integrated renewable energy system for multigeneration. Energy, 78, 196–204.

  96. Valenzuela, C., Mata‐torres, C., Cardemil, J. M., & Escobar, R. A. (2017). CSP + PV hybrid solar plants for power and water cogeneration in northern Chile. Solar Energy, 157(8), 713–726.
    Paper not yet in RePEc: Add citation now
  97. Vant‐Hull, L. L. (2012). Central tower concentrating solar power (CSP) system. In K. Lovegrove & W. Stein (Eds.), Concentrating solar power technology principles, developments and applications. Central (1st ed., pp. 240–283). Woodhead Publishing Limited.
    Paper not yet in RePEc: Add citation now
  98. Vidal, M., & Martín, M. (2015). Optimal coupling of a biomass based polygeneration system with a concentrated solar power facility for the constant production of electricity over a year. Computer and Chemical Engineering, 72, 273–283.
    Paper not yet in RePEc: Add citation now
  99. Vignarooban, K., Xu, X., Arvay, A., Hsu, K., & Kannan, A. M. (2015). Heat transfer fluids for concentrating solar power systems—A review. Applied Energy, 146, 383–396.

  100. Weinstein, L. A., Loomis, J., Bhatia, B., Bierman, D. M., Wang, E. N., & Chen, G. (2015). Concentrating solar power. Chemical Reviews, 115(23), 12797–12838.
    Paper not yet in RePEc: Add citation now
  101. Wu, H., Liu, Q., Bai, Z., Xie, G., & Zheng, J. (2019). Performance investigation of a novel multi‐functional system for power, heating and hydrogen with solar energy and biomass. Energy Conversion and Management, 196, 768–778.
    Paper not yet in RePEc: Add citation now
  102. Xu, X., Vignarooban, K., Xu, B., Hsu, K., & Kannan, A. M. (2016). Prospects and problems of concentrating solar power technologies for power generation in the desert regions. Renewable and Sustainable Energy Reviews, 53, 1106–1131.

  103. Ye, X., Wang, J., & Li, C. (2016). Performance and emission reduction potential of renewable energy aided coal‐fired power generation systems. Energy, 113, 966–979.

  104. Zarza, E. (2012). Parabolic‐trough concentrating solar power (CSP) systems. In K. Lovegrove & W. Stein (Eds.), Concentrating solar power technology principles, developments and applications. Parabolic (1st ed., pp. 197–230). Woodhead Publishing Limited.
    Paper not yet in RePEc: Add citation now
  105. Zhai, R., Liu, H., Chen, Y., Wu, H., & Yang, Y. (2017). The daily and annual technical‐economic analysis of the thermal storage PV‐CSP system in two dispatch strategies. Energy Conversion and Management, 154(11), 56–67.
    Paper not yet in RePEc: Add citation now
  106. Zhang, G., Li, Y., & Zhang, N. (2017). Performance analysis of a novel low CO2‐emission solar hybrid combined cycle power system. Energy, 128, 152–162.

  107. Zhang, H. L., Baeyens, J., Degrève, J., & Cacères, G. (2013). Concentrated solar power plants: Review and design methodology. Renewable and Sustainable Energy Reviews, 22, 466–481.

  108. Zhang, X., Li, H., Liu, L., Zeng, R., & Zhang, G. (2016). Analysis of a feasible trigeneration system taking solar energy and biomass as co‐feeds. Energy Conversion and Management, 122, 74–84.
    Paper not yet in RePEc: Add citation now
  109. Zhou, C., Doroodchi, E., & Moghtaderi, B. (2013). An in‐depth assessment of hybrid solar—Geothermal power generation. Energy Conversion and Management, 74, 88–101.
    Paper not yet in RePEc: Add citation now
  110. Zurita, A., Mata‐torres, C., Cardemil, J. M., & Escobar, R. A. (2020). Assessment of time resolution impact on the modeling of a hybrid CSP‐PV plant: A case of study in Chile. Solar Energy, 202(2), 553–570.
    Paper not yet in RePEc: Add citation now

Cocites

Documents in RePEc which have cited the same bibliography

  1. Dual-combustion chamber cycle utilizing biomass and geothermal energy: A comprehensive economic analysis and multi-objective optimization for enhanced multi-generation. (2025). Mahmoudi, S. M. S., ; Rabet, Shayan ; Yari, Mortaza ; Soltani, Saeed.
    In: Renewable Energy.
    RePEc:eee:renene:v:244:y:2025:i:c:s0960148125004227.

    Full description at Econpapers || Download paper

  2. Machine learning-based optimization and 4E analysis of renewable-based polygeneration system by integration of GT-SRC-ORC-SOFC-PEME-MED-RO using multi-objective grey wolf optimization algorithm and neural networks. (2024). Forootan, Mohammad Mahdi ; Ahmadi, Abolfazl.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:200:y:2024:i:c:s1364032124003423.

    Full description at Econpapers || Download paper

  3. Thermo-economic analysis of an integrated combined heating, cooling, and power unit with dish collector and organic Rankine cycle. (2024). Fereidoni, Sahar ; Mirzaei, Mohammad Reza ; Motlagh, Maryam Sadeghi ; Kasaeian, Alibakhsh.
    In: Energy.
    RePEc:eee:energy:v:296:y:2024:i:c:s0360544224008612.

    Full description at Econpapers || Download paper

  4. Evaluation of operational strategy of cooling and thermal energy storage tanks in optimal design of multi generation system. (2023). Ghamari, Vahid ; Dehaj, Mohammad Shafiey ; Hajabdollahi, Hassan ; Saleh, Amin.
    In: Energy.
    RePEc:eee:energy:v:284:y:2023:i:c:s0360544223026506.

    Full description at Econpapers || Download paper

  5. Economic and energy evaluation of a solar multi-generation system powered by the parabolic trough collectors. (2023). Pourmoghadam, Peyman ; Kasaeian, Alibakhsh.
    In: Energy.
    RePEc:eee:energy:v:262:y:2023:i:pa:s0360544222022447.

    Full description at Econpapers || Download paper

  6. Renewable heat powered polygeneration system based on an advanced absorption cycle for rural communities. (2023). Saravanan, R ; Kumar, Praveen G ; Maiya, M P ; Ayou, Dereje S ; Narendran, C ; Coronas, Alberto.
    In: Energy.
    RePEc:eee:energy:v:262:y:2023:i:pa:s0360544222021843.

    Full description at Econpapers || Download paper

  7. Performance Evaluation of a Solar Heat-Driven Poly-Generation System for Residential Buildings Using Various Arrangements of Heat Recovery Units. (2022). Alqaed, Saeed ; Alharthi, Mathkar A ; Mustafa, Jawed ; Elattar, Hassan F ; Refaey, Hassanein A ; Almehmadi, Fahad Awjah ; Fouda, Ali.
    In: Energies.
    RePEc:gam:jeners:v:15:y:2022:i:22:p:8750-:d:979354.

    Full description at Econpapers || Download paper

  8. Energy Performance Assessment of a Novel Solar Poly-Generation System Using Various ORC Working Fluids in Residential Buildings. (2022). Alqaed, Saeed ; Alharthi, Mathkar A ; Mustafa, Jawed ; Elattar, H F ; Refaey, H A ; Almehmadi, Fahad Awjah ; Fouda, A.
    In: Energies.
    RePEc:gam:jeners:v:15:y:2022:i:21:p:8286-:d:964707.

    Full description at Econpapers || Download paper

  9. Thermal Analysis of a Parabolic Trough Collectors System Coupled to an Organic Rankine Cycle and a Two-Tank Thermal Storage System: Case Study of Itajubá-MG Brazil. (2022). Escorcia, Yulineth Cardenas ; Venturini, Osvaldo Jose ; Mendoza, Luis Sebastian ; Caballero, Gaylord Carrillo ; Gutierrez, Elkin I ; Silva, Electo Eduardo ; Meza, Anibal Alviz ; Galindo, Ana Lisbeth.
    In: Energies.
    RePEc:gam:jeners:v:15:y:2022:i:21:p:8261-:d:963968.

    Full description at Econpapers || Download paper

  10. Hybrid Solar-Driven Desalination/Cooling Systems: Current Situation and Future Trend. (2022). Mohammed, Ramy H ; El-Ghetany, Hamdy H ; Ali, Ehab S ; Zakaria, Ayman M ; Farid, Ayman M ; Zohir, Alaa E ; Alsaman, Ahmed S ; Hassan, Ahmed A ; Askalany, Ahmed A.
    In: Energies.
    RePEc:gam:jeners:v:15:y:2022:i:21:p:8099-:d:959198.

    Full description at Econpapers || Download paper

  11. Exergy-based weighted optimization and smart decision-making for renewable energy systems considering economics, reliability, risk, and environmental assessments. (2022). Safder, Usman ; Tariq, Shahzeb ; Yoo, Changkyoo.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:162:y:2022:i:c:s1364032122003513.

    Full description at Econpapers || Download paper

  12. Techno-economic, environmental and emergy analysis and optimization of integrated solar parabolic trough collector and multi effect distillation systems with a combined cycle power plant. (2022). Khoshgoftar, Mohammad Hasan ; Aghdam, Meysam Hajizadeh ; Talkhoncheh, Mahdi Khajeh ; Modabber, Hossein Vazini ; Ghasemi, Amir.
    In: Energy.
    RePEc:eee:energy:v:240:y:2022:i:c:s0360544221027481.

    Full description at Econpapers || Download paper

  13. Optimization of a multi-generation power, desalination, refrigeration and heating system. (2022). Morosuk, Tatiana ; Mussati, Sergio F ; Aguirre, Pio A ; Pietrasanta, Ariana M.
    In: Energy.
    RePEc:eee:energy:v:238:y:2022:i:pb:s036054422101985x.

    Full description at Econpapers || Download paper

  14. A review of solar-driven organic Rankine cycles: Recent challenges and future outlook. (2021). Mahian, Omid ; Najafi, Gholamhassan ; Rajaee, Fatemeh ; Bellos, Evangelos ; Markides, Christos N ; Kasaeian, Ailbakhsh ; le Roux, Willem G ; Loni, Reyhaneh.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:150:y:2021:i:c:s1364032121006948.

    Full description at Econpapers || Download paper

  15. Integration schemes for hybrid and polygeneration concentrated solar power plants. (2021). Escobar, Rodrigo ; Cardemil, Jose M ; Matatorres, Carlos ; Starke, Allan R ; Zurita, Adriana.
    In: Wiley Interdisciplinary Reviews: Energy and Environment.
    RePEc:bla:wireae:v:10:y:2021:i:6:n:e412.

    Full description at Econpapers || Download paper

  16. Thermodynamic Analysis and Comparison of Two Small-Scale Solar Electrical Power Generation Systems. (2020). Wu, Yuting ; Meng, Qingpeng ; Li, Junfen ; Guo, Hang ; Ye, Fang ; Ma, Chongfang.
    In: Sustainability.
    RePEc:gam:jsusta:v:12:y:2020:i:24:p:10268-:d:458966.

    Full description at Econpapers || Download paper

  17. Comparative Analysis and Design of a Solar-Based Parabolic Trough–ORC Cogeneration Plant for a Commercial Center. (2020). Lozano, Miguel A ; Serra, Luis M ; Pina, Eduardo A ; Lazaro, Ana ; Hernandez, Adrian.
    In: Energies.
    RePEc:gam:jeners:v:13:y:2020:i:18:p:4807-:d:413489.

    Full description at Econpapers || Download paper

  18. Design and Thermo-Economic Comparisons of an Absorption Air Conditioning System Based on Parabolic Trough and Evacuated Tube Solar Collectors. (2020). Alobaid, Falah ; Epple, Bernd ; Al-Falahi, Adil.
    In: Energies.
    RePEc:gam:jeners:v:13:y:2020:i:12:p:3198-:d:373868.

    Full description at Econpapers || Download paper

  19. The Ottana solar facility: dispatchable power from small-scale CSP plants based on ORC systems. (2020). Petrollese, Mario ; Cau, Giorgio ; Cocco, Daniele.
    In: Renewable Energy.
    RePEc:eee:renene:v:147:y:2020:i:p3:p:2932-2943.

    Full description at Econpapers || Download paper

  20. Performance assessment of a standard radial turbine as turbo expander for an adapted solar concentration ORC. (2020). Danel, Quentin ; Deligant, Michael ; Bakir, Farid ; Sauret, Emilie.
    In: Renewable Energy.
    RePEc:eee:renene:v:147:y:2020:i:p3:p:2833-2841.

    Full description at Econpapers || Download paper

  21. Design and testing of a 340 kW Organic Rankine Cycle system for Low Pressure Saturated Steam heat source. (2020). Dai, Xiaoye ; Zhao, WU ; Wang, Puwei ; Shi, Lin ; Hu, Busong ; Wu, Zhihua.
    In: Energy.
    RePEc:eee:energy:v:210:y:2020:i:c:s0360544220314870.

    Full description at Econpapers || Download paper

  22. Thermodynamic comparison of two novel combined systems based on solar loop heat pipe evaporator. (2020). Beygzadeh, V ; Khalilarya, SH ; Mirzaee, I.
    In: Energy.
    RePEc:eee:energy:v:206:y:2020:i:c:s0360544220312524.

    Full description at Econpapers || Download paper

  23. Numerical investigation on the effect of toroidal rings in a parabolic trough receiver with the operation of gases: An energy and exergy analysis. (2020). Natarajan, E ; Ahmed, Arshad K.
    In: Energy.
    RePEc:eee:energy:v:203:y:2020:i:c:s0360544220309877.

    Full description at Econpapers || Download paper

  24. Optimal operation of a parabolic solar collector with twisted-tape insert by multi-objective genetic algorithms. (2019). Garduno-Ramirez, Raul ; Jaramillo, O A ; Borunda, Monica.
    In: Renewable Energy.
    RePEc:eee:renene:v:143:y:2019:i:c:p:540-550.

    Full description at Econpapers || Download paper

  25. Energy and economic assessment of solar Organic Rankine Cycle for combined heat and power generation in residential applications. (2019). Chacartegui, Ricardo ; Mendez, Juan ; Becerra, Jose A ; Garcia-Saez, Irene ; Loncar, Drazen ; Ortiz, Carlos.
    In: Renewable Energy.
    RePEc:eee:renene:v:140:y:2019:i:c:p:461-476.

    Full description at Econpapers || Download paper

  26. Transient thermal prediction methodology for parabolic trough solar collector tube using artificial neural network. (2019). Asako, Yutaka ; Suwa, Tohru ; Heng, Shye Yunn ; Nagasaka, Ken.
    In: Renewable Energy.
    RePEc:eee:renene:v:131:y:2019:i:c:p:168-179.

    Full description at Econpapers || Download paper

  27. Thermodynamic and economic assessments of a novel CCHP cycle utilizing low-temperature heat sources for domestic applications. (2018). Farshi, Garousi L ; Mosaffa, A H.
    In: Renewable Energy.
    RePEc:eee:renene:v:120:y:2018:i:c:p:134-150.

    Full description at Econpapers || Download paper

  28. Efficiency and heat transfer improvements in a parabolic trough solar collector using TiO2 nanofluids under turbulent flow regime. (2018). Sathyamurthy, Ravishankar ; Nagarajan, P K ; Mahian, Omid ; Subramani, J.
    In: Renewable Energy.
    RePEc:eee:renene:v:119:y:2018:i:c:p:19-31.

    Full description at Econpapers || Download paper

  29. Thermodynamic and economic analysis and multi-objective optimization of a novel transcritical CO2 Rankine cycle with an ejector driven by low grade heat source. (2018). Dai, Yiping ; Zhao, Pan ; Zhou, Kehan ; Xia, Jiaxi ; Wang, Jiangfeng.
    In: Energy.
    RePEc:eee:energy:v:161:y:2018:i:c:p:337-351.

    Full description at Econpapers || Download paper

  30. Thermodynamic evaluation of an ORC system with a Low Pressure Saturated Steam heat source. (2018). Ma, Yuezheng ; Tian, Ran ; Shi, Lin ; Duan, Jie ; Wang, Dabiao ; Hu, Busong.
    In: Energy.
    RePEc:eee:energy:v:149:y:2018:i:c:p:375-385.

    Full description at Econpapers || Download paper

  31. Hydrothermal model for small-scale linear Fresnel absorbers with non-uniform stepwise solar distribution. (2018). Larsen, Silvana Flores ; Hongn, Marcos.
    In: Applied Energy.
    RePEc:eee:appene:v:223:y:2018:i:c:p:329-346.

    Full description at Econpapers || Download paper

  32. Optimization and multi-time scale modeling of pilot solar driven polygeneration system based on organic Rankine cycle. (2018). Xu, Weicong ; Deng, Shuai ; Lin, Shan ; Ma, Minglu ; Zhao, LI ; Ni, Jiaxin ; Zhang, Ying.
    In: Applied Energy.
    RePEc:eee:appene:v:222:y:2018:i:c:p:396-409.

    Full description at Econpapers || Download paper

  33. A review of solar energy based heat and power generation systems. (2017). Andreasen, Jesper Graa ; Haglind, Fredrik ; Buhler, Fabian ; Modi, Anish.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:67:y:2017:i:c:p:1047-1064.

    Full description at Econpapers || Download paper

  34. Thermal plant based on parabolic trough collectors for industrial process heat generation in Morocco. (2017). el Cadi, Radia Ait ; Bouabid, Khalid ; Plaza, Diego Martinez ; Abnay, Brahim ; el Ghazzani, Badreddine ; Ihlal, Ahmed.
    In: Renewable Energy.
    RePEc:eee:renene:v:113:y:2017:i:c:p:1261-1275.

    Full description at Econpapers || Download paper

  35. Exergy analysis of concentrating solar systems for heat and power production. (2017). Tola, Vittorio ; Petrollese, Mario ; Cocco, Daniele.
    In: Energy.
    RePEc:eee:energy:v:130:y:2017:i:c:p:192-203.

    Full description at Econpapers || Download paper

  36. Experimental investigation of concentrated solar air-heater with internal multiple-fin array. (2016). Nem, Magdalena ; Kasperski, Jacek.
    In: Renewable Energy.
    RePEc:eee:renene:v:97:y:2016:i:c:p:722-730.

    Full description at Econpapers || Download paper

  37. Parabolic trough solar collector for low enthalpy processes: An analysis of the efficiency enhancement by using twisted tape inserts. (2016). Jaramillo, O A ; Robles, M ; Borunda, Monica ; Velazquez-Lucho, K M.
    In: Renewable Energy.
    RePEc:eee:renene:v:93:y:2016:i:c:p:125-141.

    Full description at Econpapers || Download paper

Coauthors

Authors registered in RePEc who have wrote about the same topic

Report date: 2025-10-04 18:11:57 || Missing content? Let us know

CitEc is a RePEc service, providing citation data for Economics since 2001. Last updated August, 3 2024. Contact: Jose Manuel Barrueco.