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A detailed thermal model of a parabolic trough collector receiver. (2012). Kalogirou, Soteris A..
In: Energy.
RePEc:eee:energy:v:48:y:2012:i:1:p:298-306.

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  1. Temperature homogenization control of parabolic trough solar collector field based on hydraulic calculation and extended Kalman filter. (2024). Zhang, Junli ; Wang, Jiaxing ; Song, Yuhui ; Li, Yiguo.
    In: Renewable Energy.
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  2. A detailed 1D model of a parabolic trough solar receiver with a double-validation approach. (2024). Bounahmidi, Tijani ; Abderafi, Souad ; Ladouy, Sara ; Eddouibi, Jaouad ; Vaudreuil, Sebastien ; Chaanaoui, Meriem.
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  3. Study of Twisted Tape Inserts Segmental Application in Low-Concentrated Solar Parabolic Trough Collectors. (2023). Bartela, Ukasz ; Wcel, Daniel ; Ochmann, Jakub ; Stanek, Bartosz.
    In: Energies.
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  4. A novel design to optimize the optical performances of parabolic trough collector using Taguchi, ANOVA and grey relational analysis methods. (2023). Bougeard, D ; Russeil, S ; Pelay, U ; ben Taher, M A.
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  5. Modelling and analysis of a novel production process of high-pressure hydrogen with CO2 separation using electrochemical compressor and LFR solar collector. (2023). Mehrpooya, Mehdi ; Shabani, Adib ; Pazoki, Maryam.
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  6. A potential solution in reducing the parabolic trough based solar industrial process heat system cost by partially replacing absorbers coatings with non-selective ones in initial loop sections. (2023). Bartela, Ukasz ; Wang, Wujun ; Stanek, Bartosz.
    In: Applied Energy.
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  7. A hybrid parabolic trough solar collector system integrated with photovoltaics. (2023). Yang, Hongxing ; Shen, Zhicheng ; Yao, Yao ; Wang, Qiliang.
    In: Applied Energy.
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  8. A comparative analysis of opto-thermal figures of merit for high temperature solar thermal absorber coatings. (2022). Manzano-Agugliaro, Francisco ; Roger, Marc ; Sutter, Florian ; Ballestrin, Jesus ; Garrido, Jorge ; Caron, Simon.
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  9. Solar tracker error impact on linear absorbers efficiency in parabolic trough collector – Optical and thermodynamic study. (2022). Rulik, Sebastian ; Bartela, Ukasz ; Wcel, Daniel ; Stanek, Bartosz.
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  10. Influence of reflector installation errors on optical-thermal performance of parabolic trough collectors based on a MCRT - FVM coupled model. (2022). Yu, Xiaohui ; Zhang, Ruirui ; Liu, Shuaishuai ; Yang, Bin.
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  11. Modeling and numerical simulation of a parabolic trough collector using an HTF with temperature dependent physical properties. (2022). Gallego, Francisco Ortegon ; el Kouche, Amal.
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  12. Solar-driven liquid air power plant modeling, design space exploration, and multi-objective optimization. (2022). Yang, S.
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  13. Assessment of a multiple port storage tank in a CPC-driven solar process heat system. (2021). Hassan, Muhammed A ; El-Bakry, Medhat M ; Amein, Hamza ; Abd, Shehab M.
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  14. Design methodology of a parabolic trough collector field for maximum annual energy yield. (2021). Sharma, Manoj Kumar ; Singh, Manmeet ; Bhattacharya, Jishnu.
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  15. Numerical modeling and experimental cross-validation of a solar thermal collector through an innovative hybrid CFD model. (2021). Sobhansarbandi, Sarvenaz ; Nokhosteen, Arman.
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  16. Thermal performance simulation analysis of solar field for parabolic trough collectors assigned for ambient conditions in Morocco. (2021). Alaoui, Mohammed ; Bah, Abdellah ; Hafs, Hajar ; Asbik, Mohamed ; Zaaoumi, Anass.
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  17. Efficiency enhancement of a solar trough collector by combining solar and hot mirrors. (2021). Xu, Yucong ; Qiu, YU ; Liu, Bin ; Wang, Qiliang.
    In: Applied Energy.
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  18. Wind effects on heat loss from a receiver with longitudinal tilt angle of small-scale linear Fresnel reflectors for urban applications. (2020). Lopez-Smeetz, C ; Barbon, A ; Pardellas, A ; Bayon, L.
    In: Renewable Energy.
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  19. Performance evaluation of a linear Fresnel collector with catoptric subsets. (2020). Mathioulakis, Emmanouil ; Vouros, Alexandros ; Belessiotis, Vassilis ; Papanicolaou, Elias.
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  20. Thermo-economic and exergy analysis and optimization of small PTC collectors for solar heat integration in industrial processes. (2020). Benaissa, Mohammed ; Bouya, Mohsine ; Ghazouani, Mokhtar.
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  21. Thermal-hydraulic and thermodynamic performance of parabolic trough solar receiver partially filled with gradient metal foam. (2020). Liang, Xingang ; Peng, Hao.
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  22. Cryogenic biogas upgrading process using solar energy (process integration, development, and energy analysis). (2020). Manizadeh, Ali ; Ghorbani, Bahram ; Mehrpooya, Mehdi.
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  23. Thermal optimization of a novel solar/hydro/biomass hybrid renewable system for production of low-cost, high-yield, and environmental-friendly biodiesel. (2020). Nejad, Ardeshir Shayan ; Zahedi, Alireza ; Mirnezami, Seyed Abolfazl.
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  24. Thermal-hydraulic and thermodynamic performances of liquid metal based nanofluid in parabolic trough solar receiver tube. (2020). Li, Meilin ; Guo, Wenhua ; Peng, Hao.
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  25. Optical and thermal performance analysis of a micro parabolic trough collector for building integration. (2020). Qiao, Runpeng ; Zhu, Yuezhao ; Moghimi, M A ; Yang, Moucun ; Taylor, Robert A ; Wang, Yinfeng.
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  26. A review study on the modeling of high-temperature solar thermal collector systems. (2019). Said, Zafar ; Hachicha, Ahmed Amine ; Rodriguez, Ivette.
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  27. Computational analysis for a multi-effect distillation (MED) plant driven by solar energy in Chile. (2019). Saldivia, David ; Cornejo, Lorena ; Barraza, Rodrigo ; Rosales, Carlos.
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  28. Impacts of non-ideal optical factors on the performance of parabolic trough solar collectors. (2019). Yao, Yang ; Jiang, Yiqiang ; Zou, Bin ; Yang, Hongxing.
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  29. Energetic and exergetic analyses on structural optimized parabolic trough solar receivers in a concentrated solar–thermal collector system. (2019). Cao, Jingyu ; Yang, Honglun ; Hu, Mingke ; Wang, Qiliang ; Pei, Gang ; Su, Yuehong ; Li, Jing.
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  30. Modeling and performance analysis of a PTC for industrial phosphate flash drying. (2019). Moudakkar, Touria ; Bounahmidi, T ; Vaudreuil, S ; el Hallaoui, Z.
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  31. Review of solar parabolic-trough collector geometrical and thermal analyses, performance, and applications. (2018). Abdulhamed, Ali Jaber ; Hairuddin, Abdul Aziz ; Abidin, Mohd Zainal ; Adam, Nor Mariah.
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  32. A detailed mathematical model for thermal performance analysis of a cylindrical cavity receiver in a solar parabolic dish collector system. (2018). Karimi, Reza ; Avargani, Vahid Madadi ; Gheinani, Touraj Tavakoli.
    In: Renewable Energy.
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  33. Experimental study of a designed solar parabolic trough with large rim angle. (2018). Azzouzi, Djelloul ; Boumeddane, Boussad ; Belainine, Khathir Abdelrahim ; Bourorga, Houssam Eddine.
    In: Renewable Energy.
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  34. Alternative designs of evacuated receiver for parabolic trough collector. (2018). Patil, Ramchandra G ; Dalvi, Vishwanath H ; Joshi, Jyeshtharaj B ; Panse, Sudhir V.
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  35. SMALL-SIZED parabolic-trough solar collectors: Development of a test loop and evaluation of testing conditions. (2018). Fernandez-Garcia, Aranzazu ; Manzano-Agugliaro, Francisco ; Hernandez-Escobedo, Quetzalcoatl ; Perez, Manuel ; Rojas, Esther ; Zarza, Eduardo ; Valenzuela, Loreto.
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  36. Thermo-economic analysis and optimization of a solar-driven ammonia-water regenerative Rankine cycle and LNG cold energy. (2018). Habibi, Hamed ; Ayazpour, Mojtaba ; Zoghi, Mohammad ; Javaherdeh, Koroush ; Chitsaz, Ata.
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  37. Performance study and comparative analysis of traditional and double-selective-coated parabolic trough receivers. (2018). Yang, Honglun ; Pei, Gang ; Li, Jing ; Huang, Xiaona ; Wang, Qiliang.
    In: Energy.
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  38. Heat transfer analysis of a new volumetric based receiver for parabolic trough solar collector. (2018). Fan, Man ; Xia, Junbao ; Zheng, Wandong ; Zhang, Huan ; You, Shijun ; Liang, Hongbo.
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  39. Modeling, simulation and performance analysis of parabolic trough solar collectors: A comprehensive review. (2018). Yilmaz, Brahim Halil ; Mwesigye, Aggrey.
    In: Applied Energy.
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  40. Novel optical efficiency formulas for parabolic trough solar collectors: Computing method and applications. (2018). Cheng, Ze-Dong ; Zhao, Xue-Ru.
    In: Applied Energy.
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  41. Applicability analysis of the solar heating system with parabolic trough solar collectors in different regions of China. (2018). Fan, Man ; Wu, Xiaoting ; Yin, Baoquan ; Zhang, Huan ; You, Shijun ; Liang, Hongbo.
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  42. Dynamic 3D volume element model of a parabolic trough solar collector for simulation and optimization. (2018). Yang, S ; Ordonez, J C ; Sensoy, T S.
    In: Applied Energy.
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  43. Thermal Analysis of a Solar Powered Absorption Cooling System with Fully Mixed Thermal Storage at Startup. (2017). Gheorghian, Adina-Teodora ; Stanciu, Dorin .
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  44. Experimental and numerical studies of thermal performance enhancement in the receiver part of solar parabolic trough collectors. (2017). Kumaresan, G ; Velraj, R ; Santosh, R ; Sudhakar, P.
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  45. Thermal performance of parabolic trough solar collectors. (2017). Conrado, Salgado L ; Calderon, G ; Rodriguez-Pulido, A.
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  46. Experimental investigation on a solar parabolic trough collector for absorber tube filled with porous media. (2017). Jamal-Abad, Milad Tajik ; Aminy, Mohammad ; Saedodin, Seyfollah .
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  47. Performance analysis on a high-temperature solar evacuated receiver with an inner radiation shield. (2017). Pei, Gang ; Li, Jing ; Su, Katy ; Yang, Honglun ; Wang, Qiliang ; Hu, Mingke.
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  48. Experimental investigation of transparent parabolic trough collector based on gas-phase nanofluid. (2017). de Risi, Arturo ; Potenza, Marco ; Milanese, Marco ; Colangelo, Gianpiero.
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  49. Modelling and simulation of a novel Electrical Energy Storage (EES) Receiver for Solar Parabolic Trough Collector (PTC) power plants. (2017). Nation, Deju D ; Dixon-Hardy, Darron W ; Heggs, Peter J.
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  50. Thermo-economic analysis of an integrated solar power generation system using nanofluids. (2017). Alashkar, Adnan ; Gadalla, Mohamed .
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  51. Numerical study on combined natural and forced convection in the fully-developed turbulent region for a horizontal circular tube heated by non-uniform heat flux. (2017). Li, Zeng-Yao ; Huang, Zhen ; Tao, Wen-Quan .
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  52. A review of solar parabolic trough collector. (2016). Jebasingh, V K ; Joselin, G M.
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  53. Addressing the main challenges of energy security in the twenty-first century – Contributions of the conferences on Sustainable Development of Energy, Water and Environment Systems. (2016). Lund, Henrik ; Markovska, Natasa ; Dui, Neven ; Mathiesen, Brian Vad ; Guzovi, Zvonimir ; Piacentino, Antonio ; Schlor, Holger .
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  54. Three-dimensional numerical study on fully-developed mixed laminar convection in parabolic trough solar receiver tube. (2016). Li, Zeng-Yao ; Tao, Wen-Quan ; Huang, Zhen.
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  55. A detailed nonuniform thermal model of a parabolic trough solar receiver with two halves and two inactive ends. (2015). He, Ya-Ling ; Cheng, Ze-Dong ; Qiu, YU.
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  56. Comparison of different heat transfer models for parabolic trough solar collectors. (2015). Liang, Hongbo ; Zhang, Huan ; You, Shijun.
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  57. A numerical study of parabolic trough receiver with nonuniform heat flux and helical screw-tape inserts. (2014). Gao, Fangyuan ; Diao, Xungang ; Song, Xingwang ; Zheng, Liqing ; Dong, Guobo ; Zhou, Fuyun .
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  58. Minimum entropy generation due to heat transfer and fluid friction in a parabolic trough receiver with non-uniform heat flux at different rim angles and concentration ratios. (2014). Mwesigye, Aggrey ; Bello-Ochende, Tunde ; Meyer, Josua P..
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  59. Structural reliability analysis of parabolic trough receivers. (2014). Lei, Dongqiang ; Wu, Zhiyong ; Wang, Zhifeng ; Zhang, Yunting ; Shao, Jiajia ; Yuan, Guofeng .
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  60. Comparative and sensitive analysis for parabolic trough solar collectors with a detailed Monte Carlo ray-tracing optical model. (2014). Du, B. C. ; Zheng, Z. J. ; Cheng, Z. D. ; Xu, Y. ; Cui, F. Q..
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  22. Ratzel, A. ; Hickox, C. ; Gartling, D. Techniques for reducing thermal conduction and natural convection heat losses in annular receiver geometries. 1979 Journal of Heat Transfer. 101 108-113
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  23. Tao, Y.B. ; He, Y.L. Numerical study on coupled fluid flow and heat transfer process in parabolic trough solar collector tube. 2010 Solar Energy. 84 1863-1872
    Paper not yet in RePEc: Add citation now
  24. Weidong, H. ; Peng, H. ; Zeshao, C. Performance simulation of a parabolic trough solar collector. 2012 Solar Energy. 86 746-755
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Cocites

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  1. Numerical analysis of the performance improvement of a flat-plate solar collector using conjugated porous blocks. (2021). Dhinakaran, S ; Anirudh, K.
    In: Renewable Energy.
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  2. Numerical study on performance improvement of a flat-plate solar collector filled with porous foam. (2020). Anirudh, K ; Dhinakaran, S.
    In: Renewable Energy.
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  3. Peristaltic pumping of magnetic nanofluids with thermal radiation and temperature-dependent viscosity effects: Modelling a solar magneto-biomimetic nanopump. (2019). Kuharat, S ; Tripathi, D ; Siva, E P ; Prakash, J ; Beg, Anwar O.
    In: Renewable Energy.
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  4. A review on the applications of porous materials in solar energy systems. (2017). Rashidi, Saman ; Esfahani, Javad Abolfazli.
    In: Renewable and Sustainable Energy Reviews.
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  5. Effects of porous material and nanoparticles on the thermal performance of a flat plate solar collector: An experimental study. (2017). Jouybari, Javaniyan H ; Wongwises, S ; Nimvari, Eshagh M ; Zamzamian, A ; Saedodin, S.
    In: Renewable Energy.
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  6. Experimental investigation on a solar parabolic trough collector for absorber tube filled with porous media. (2017). Jamal-Abad, Milad Tajik ; Aminy, Mohammad ; Saedodin, Seyfollah .
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  7. Explore the performance limit of a solar PV – thermochemical power generation system. (2017). Li, Wenjia ; Hao, Yong.
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  8. Similarity analysis of parabolic-trough solar collectors. (2017). Hao, Yong ; Jin, Jian ; Ling, Yunyi.
    In: Applied Energy.
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  9. A state-of-the-art review of solar air-conditioning systems. (2016). Nkwetta, Dan Nchelatebe ; Sandercock, Jim .
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  10. An integrated combined cycle system driven by a solar tower: A review. (2016). Okoroigwe, Edmund ; Madhlopa, Amos .
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  11. Potential of concentrating solar power (CSP) technology in Tunisia and the possibility of interconnection with Europe. (2016). Trabelsi, Seif Eddine ; Balghouthi, Moncef ; Guizani, Amenallah ; Hadj, Abdessalem Bel ; ben Amara, Mahmoud .
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  12. Solar power technologies for sustainable electricity generation – A review. (2016). Khan, Jibran ; Arsalan, Mudassar H.
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  13. Review of heat transfer fluids in tube-receivers used in concentrating solar thermal systems: Properties and heat transfer coefficients. (2016). Spreafico, L ; Benoit, H ; Flamant, G ; Gauthier, D.
    In: Renewable and Sustainable Energy Reviews.
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  14. A review of solar parabolic trough collector. (2016). Jebasingh, V K ; Joselin, G M.
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  15. Surface roughness impact on the heat loss of solar vacuum heat collector elements (HCE). (2016). Nakar, Doron ; Feuermann, Daniel .
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  16. Thermal enhancement of solar parabolic trough collectors by using nanofluids and converging-diverging absorber tube. (2016). Tzivanidis, C ; Gkinis, G ; Antonopoulos, K A ; Bellos, E.
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  17. 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 ; Velazquez-Lucho, K M ; Borunda, Monica .
    In: Renewable Energy.
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  18. A new solar based multigeneration system with hot and cold thermal storages and hydrogen production. (2016). Almahdi, M ; Rosen, M A ; Dincer, I.
    In: Renewable Energy.
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  19. Evaluation of WRF shortwave radiation parameterizations in predicting Global Horizontal Irradiance in Greece. (2016). Zempila, Melina-Maria ; Kazantzidis, Andreas ; Melas, Dimitris ; Bais, Alkiviadis ; Giannaros, Theodore M.
    In: Renewable Energy.
    RePEc:eee:renene:v:86:y:2016:i:c:p:831-840.

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  20. An experimental investigation on a small-sized parabolic trough solar collector for water heating in cold areas. (2016). Zou, Bin ; Jiang, Yiqiang ; Yao, Yang ; Dong, Jiankai.
    In: Applied Energy.
    RePEc:eee:appene:v:163:y:2016:i:c:p:396-407.

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  21. A quasi-dynamic simulation model for direct steam generation in parabolic troughs using TRNSYS. (2016). Biencinto, Mario ; Valenzuela, Loreto ; Gonzalez, Lourdes .
    In: Applied Energy.
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  22. Thermodynamic performance evaluation of solar and other thermal power generation systems: A review. (2015). Gupta, M K ; Tyagi, S K ; Reddy, Siva V ; Panwar, N L ; Ranjan, K R ; Kaushik, S C.
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  23. Concentrated photovoltaic thermal (CPVT) solar collector systems: Part I – Fundamentals, design considerations and current technologies. (2015). Sharaf, Omar Z ; Orhan, Mehmet F.
    In: Renewable and Sustainable Energy Reviews.
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  24. Performance enhancement of solar collectors—A review. (2015). Khan, Mohd. Kaleem, ; Suman, Siddharth ; Pathak, Manabendra .
    In: Renewable and Sustainable Energy Reviews.
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  25. Solar-thermal powered desalination: Its significant challenges and potential. (2015). Reif, John H. ; Alhalabi, Wadee .
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  26. Solar energy resource assessment in Mexican states along the Gulf of Mexico. (2015). Fernandez-Garcia, A. ; Saldaa-Flores, R. ; Hernandez-Escobedo, Q. ; Manzano-Agugliaro, F. ; Rodriguez-Garcia, E..
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  27. Experimental investigation of porous disc enhanced receiver for solar parabolic trough collector. (2015). Ajay, C. S. ; Kumar, Ravi K. ; Reddy, K. S..
    In: Renewable Energy.
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  28. A detailed nonuniform thermal model of a parabolic trough solar receiver with two halves and two inactive ends. (2015). He, Ya-Ling ; Cheng, Ze-Dong ; Qiu, YU.
    In: Renewable Energy.
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  29. Effect of number of supports on the bending of absorber tube of parabolic trough concentrator. (2015). Khanna, Sourav ; Sharma, Vashi .
    In: Energy.
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  30. Thermal performance characteristics of an absorber plate fin having temperature dependent thermal conductivity and overall loss coefficient. (2015). Jilani, G. ; Thomas, Ciby .
    In: Energy.
    RePEc:eee:energy:v:86:y:2015:i:c:p:1-8.

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  31. Experimental characterisation of a solar parabolic trough collector used in a micro-CHP (micro-cogeneration) system with direct steam generation. (2015). Rochier, Dominique ; Kientz, Thiebaut ; Salagnac, Patrick ; Bouvier, Jean-Louis ; Michaux, Ghislain ; Nepveu, Franois .
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    RePEc:eee:energy:v:83:y:2015:i:c:p:474-485.

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  32. A new study on the end loss effect for parabolic trough solar collectors. (2015). Xu, Chengmu ; Ji, XU ; Yu, Qiongfen ; Zhang, Peng ; Li, Ming.
    In: Energy.
    RePEc:eee:energy:v:82:y:2015:i:c:p:382-394.

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  33. Performance comparison of two-tank direct and thermocline thermal energy storage systems for 1 MWe class concentrating solar power plants. (2015). Cocco, Daniele ; Serra, Fabio .
    In: Energy.
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  34. Closed-form modeling of direct steam generation in a parabolic trough solar receiver. (2015). Xu, Rong ; Wiesner, Theodore F..
    In: Energy.
    RePEc:eee:energy:v:79:y:2015:i:c:p:163-176.

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  35. Hybrid concentrated solar power (CSP)–biomass plants in a semiarid region: A strategy for CSP deployment in Brazil. (2015). Soria, Rafael ; Schaeffer, Roberto ; Milani, Rodrigo ; Szklo, Alexandre ; Portugal-Pereira, Joana.
    In: Energy Policy.
    RePEc:eee:enepol:v:86:y:2015:i:c:p:57-72.

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  36. Improving the concentration ratio of parabolic troughs using a second-stage flat mirror. (2015). Rodriguez-Sanchez, David ; Rosengarten, Gary .
    In: Applied Energy.
    RePEc:eee:appene:v:159:y:2015:i:c:p:620-632.

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  37. Comparison of different heat transfer models for parabolic trough solar collectors. (2015). Liang, Hongbo ; Zhang, Huan ; You, Shijun.
    In: Applied Energy.
    RePEc:eee:appene:v:148:y:2015:i:c:p:105-114.

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  38. Spectral splitting strategy and optical model for the development of a concentrating hybrid PV/T collector. (2015). Mojiri, Ahmad ; Taylor, Robert A. ; Rosengarten, Gary ; Crisostomo, Felipe ; Hawkes, Evatt R. ; Surjadi, Desiree .
    In: Applied Energy.
    RePEc:eee:appene:v:141:y:2015:i:c:p:238-246.

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  39. Fresnel-based modular solar fields for performance/cost optimization in solar thermal power plants: A comparison with parabolic trough collectors. (2015). Sait, Hani H. ; Abbas, Ruben ; Martinez-Val, Jose M. ; Munoz-Anton, Javier .
    In: Applied Energy.
    RePEc:eee:appene:v:141:y:2015:i:c:p:175-189.

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  40. Experimental testing of SiNx/SiO2 thin film filters for a concentrating solar hybrid PV/T collector. (2014). Hawkes, Evatt R. ; Everett, Vernie ; Zhang, Tian ; Taylor, Robert A. ; Perez-Wurfl, Ivan ; Rosengarten, Gary ; Crisostomo, Felipe .
    In: Renewable Energy.
    RePEc:eee:renene:v:72:y:2014:i:c:p:79-87.

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  41. Potential and impacts of Concentrated Solar Power (CSP) integration in the Brazilian electric power system. (2014). Szklo, Alexandre ; Schaeffer, Roberto ; Dutra, Ricardo ; Soria, Rafael ; Moreira Cesar Borba, Bruno Soares, ; Malagueta, Diego .
    In: Renewable Energy.
    RePEc:eee:renene:v:68:y:2014:i:c:p:223-235.

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  42. A numerical study of parabolic trough receiver with nonuniform heat flux and helical screw-tape inserts. (2014). Gao, Fangyuan ; Diao, Xungang ; Song, Xingwang ; Zheng, Liqing ; Dong, Guobo ; Zhou, Fuyun .
    In: Energy.
    RePEc:eee:energy:v:77:y:2014:i:c:p:771-782.

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  43. Effect of thermo-geometric parameters on entropy generation in absorber plate fin of a solar flat plate collector. (2014). Thomas, Ciby ; Jilani, G..
    In: Energy.
    RePEc:eee:energy:v:70:y:2014:i:c:p:35-42.

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  44. An AHP (Analytic Hierarchy Process)/ANP (Analytic Network Process)-based multi-criteria decision approach for the selection of solar-thermal power plant investment projects. (2014). Pla-Rubio, Andrea ; Aragones-Beltran, Pablo ; Pastor-Ferrando, Juan-Pascual ; Chaparro-Gonzalez, Fidel .
    In: Energy.
    RePEc:eee:energy:v:66:y:2014:i:c:p:222-238.

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  45. Using the sun to decarbonize the power sector: The economic potential of photovoltaics and concentrating solar power. (2014). Stetter, Daniel ; Manger, Susanne ; Pietzcker, Robert Carl ; Luderer, Gunnar.
    In: Applied Energy.
    RePEc:eee:appene:v:135:y:2014:i:c:p:704-720.

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  46. Theoretical basis and experimental facility for parabolic trough collectors at high temperature using gas as heat transfer fluid. (2014). Zarza, E. ; Biencinto, M. ; Diez, L. E. ; Muoz-Anton, J..
    In: Applied Energy.
    RePEc:eee:appene:v:135:y:2014:i:c:p:373-381.

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  47. Research on the compensation of the end loss effect for parabolic trough solar collectors. (2014). Xu, Chengmu ; Chen, Zhiping ; Ji, XU ; Luo, Xi ; Zhang, Peng ; Li, Ming ; Liu, Jiangtao.
    In: Applied Energy.
    RePEc:eee:appene:v:115:y:2014:i:c:p:128-139.

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  48. State-of-the-art of solar thermal power plants—A review. (2013). Ranjan, K. R. ; Reddy, Siva V. ; Tyagi, S. K. ; Kaushik, S. C..
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:27:y:2013:i:c:p:258-273.

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  49. The need of subsidy for the implementation of photovoltaic solar energy as supporting of decentralized electrical power generation in Brazil. (2013). Tuna, Celso Eduardo ; Lamas, Wendell de Queiroz, ; Silveira, Jose Luz .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:20:y:2013:i:c:p:133-141.

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  50. Parabolic trough concentrators for low enthalpy processes. (2013). Venegas-Reyes, E. ; Castrejon-Garcia, R. ; Jaramillo, O. A. ; Aguilar, J. O. ; Sosa-Montemayor, F..
    In: Renewable Energy.
    RePEc:eee:renene:v:60:y:2013:i:c:p:529-539.

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  51. A potential solution for thermal imbalance of ground source heat pump systems in cold regions: Ground source absorption heat pump. (2013). Wang, Baolong ; Li, Xianting ; Shi, Wenxing ; Wu, Wei.
    In: Renewable Energy.
    RePEc:eee:renene:v:59:y:2013:i:c:p:39-48.

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  52. Impact of pressure losses in small-sized parabolic-trough collectors for direct steam generation. (2013). Lobon, David H. ; Valenzuela, Loreto.
    In: Energy.
    RePEc:eee:energy:v:61:y:2013:i:c:p:502-512.

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  53. Nonuniform heat transfer model and performance of parabolic trough solar receiver. (2013). Lu, Jianfeng ; Yang, Xiaoxi ; Ding, Jing.
    In: Energy.
    RePEc:eee:energy:v:59:y:2013:i:c:p:666-675.

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  54. Assessing the potential of hybrid fossil–solar thermal plants for energy policy making: Brayton cycles. (2013). Abanades, Alberto ; Rodriguez, Javier ; Lopez, Ignacio ; Bernardos, Eva .
    In: Energy Policy.
    RePEc:eee:enepol:v:62:y:2013:i:c:p:99-106.

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  55. Assessing incentive policies for integrating centralized solar power generation in the Brazilian electric power system. (2013). Szklo, Alexandre ; Schaeffer, Roberto ; Dutra, Ricardo ; Arago, Raymundo ; Soria, Rafael ; Malagueta, Diego ; Borba, Bruno Soares Moreira Cesar, .
    In: Energy Policy.
    RePEc:eee:enepol:v:59:y:2013:i:c:p:198-212.

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  56. Numerical study of heat transfer enhancement in the receiver tube of direct steam generation with parabolic trough by inserting metal foams. (2013). wang, pusci ; Xu, C. ; Liu, D. Y..
    In: Applied Energy.
    RePEc:eee:appene:v:102:y:2013:i:c:p:449-460.

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  57. Advancement in solar photovoltaic/thermal (PV/T) hybrid collector technology. (2012). Kaushik, S. C. ; Tyagi, V. V..
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:16:y:2012:i:3:p:1383-1398.

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  58. A detailed thermal model of a parabolic trough collector receiver. (2012). Kalogirou, Soteris A..
    In: Energy.
    RePEc:eee:energy:v:48:y:2012:i:1:p:298-306.

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  59. Optimal design and control of solar driven air gap membrane distillation desalination systems. (2012). Chang, Hsuan ; Li, Yu-Wei ; Chen, Yih-Hang .
    In: Applied Energy.
    RePEc:eee:appene:v:100:y:2012:i:c:p:193-204.

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  60. A key review on present status and future directions of solar energy studies and applications in Saudi Arabia. (2011). Hepbasli, Arif ; Alsuhaibani, Zeyad .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:15:y:2011:i:9:p:5021-5050.

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  61. Review of solar cooling methods and thermal storage options. (2011). Ramana, A. S. ; Velraj, R. ; Chidambaram, L. A. ; Kamaraj, G..
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:15:y:2011:i:6:p:3220-3228.

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  62. Optimization methods applied to renewable and sustainable energy: A review. (2011). Alcayde, A. ; Baos, R. ; Gomez, J. ; Manzano-Agugliaro, F. ; Montoya, F. G. ; Gil, C..
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:15:y:2011:i:4:p:1753-1766.

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  63. Analysis of a solar chimney power plant in the Arabian Gulf region. (2011). Hamdan, Mohammad O..
    In: Renewable Energy.
    RePEc:eee:renene:v:36:y:2011:i:10:p:2593-2598.

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  64. Comparative field performance study of flat plate and heat pipe evacuated tube collectors (ETCs) for domestic water heating systems in a temperate climate. (2011). Duffy, A. ; McCormack, S. J. ; Mc Keever, M., ; Conlon, M. ; Ayompe, L. M..
    In: Energy.
    RePEc:eee:energy:v:36:y:2011:i:5:p:3370-3378.

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  65. A solar economy in the American Southwest: Critical next steps. (2011). Pasqualetti, Martin J. ; Haag, Susan .
    In: Energy Policy.
    RePEc:eee:enepol:v:39:y:2011:i:2:p:887-893.

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  66. Thermal analysis of solar parabolic trough with porous disc receiver. (2009). Reddy, K. S. ; Kumar, Ravi K..
    In: Applied Energy.
    RePEc:eee:appene:v:86:y:2009:i:9:p:1804-1812.

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  67. Optimum size and structure for solar energy collection systems. (2006). Badescu, Viorel.
    In: Energy.
    RePEc:eee:energy:v:31:y:2006:i:12:p:1819-1835.

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