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References 401
FIGURE 12.15
USD costs per kW installed, in function of solar radiation.
REFERENCES
[1] L. Witmer, Overview of Solar Thermal Power Systems j EME 811: Solar Thermal En-
ergy for Utilities and Industry [WWW Document], Pennsylvania State Univ., 2017.
URL: https://www.e-education.psu.edu/eme811/node/682.
[2] R. Guerrero-Lemus, J.M. Martı ´nez-Duart, Concentrated solar power, in: Renewable En-
ergies and CO 2 , Springer-Verlag, London, 2013, pp. 135e151.
[3] U. Pelay, L. Luo, Y. Fan, D. Stitou, M. Rood, Thermal energy storage systems for
concentrated solar power plants, Renew. Sustain. Energy Rev. 79 (2017) 82e100.
[4] B. Hoffschmidt, Receivers for Solar Tower Systems [www Document], 2014. URL:
http://sfera2.sollab.eu/networking/announcement-summer-schools/summer-schools/
summer-school-presentation-2014.
[5] M. Kaltschmitt, W. Streicher, A. Wiese, Renewable Energy: Technology, Economics
and Environment, Springer, Berlin, Heidelberg, 2007.
[6] V. Quaschning, Solar thermal power plants: technology fundamentals, Renew. Energy
World (2003) 109e113.
[7] T. Bauer, N. Breidenbach, N. Pfleger, D. Laing, M. Eck, Overview of Molten Salt Stor-
age System and Material Development for Solar Thermal Power Plants, American Solar
Energy Society, 2012, p. 8.
[8] U. Herrmann, M. Geyer, D. Kearney, Overview on thermal storage systems, Work.
Therm. Storage Trough Power Plants (2006).
[9] S. Kuravi, J. Trahan, D.Y. Goswami, M.M. Rahman, E.K. Stefanakos, Thermal energy
storage technologies and systems for concentrating solar power plants, Prog. Energy
Combust. Sci. 39 (2013) 285e319.
[10] EASAC, Concentrating Solar Power: Its Potential Contribution to a Sustainable Energy
Future, 2011.

