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Author

  • Bernhard Hoffschmidt (8) (remove)

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  • 2022 (2)
  • 2021 (1)
  • 2017 (1)
  • 2010 (2)
  • 2008 (2)

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  • Article (5)
  • Part of a Book (3)

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  • English (7)
  • German (1)

Keywords

  • Central receiver power plant (2)
  • Concentrated systems (2)
  • Gas turbine (2)
  • Central receiver system (1)
  • Concentrated solar collector (1)
  • Concentrating solar power (1)
  • Fresnel power plant (1)
  • Hybridization (1)
  • Power conversion systems (1)
  • Solar concentration (1)
  • Solar dish (1)

Institute

  • Fachbereich Energietechnik (8) (remove)

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Optimization of the geometry of porous SiC ceramic filtering modules using numerical methods (2008)
Spiros Alexopoulos ; Gerd Breitbach ; Bernhard Hoffschmidt ; P. Stobbe
Computational fluid flow of porous resic ceramic filtering modules and optimization of the channel edge form geometry (2008)
Spiros Alexopoulos ; Gerd Breitbach ; Bernhard Hoffschmidt ; P. Stobbe
Solarthermische Kraftwerke mit thermischen Speichern (2010)
Spiros Alexopoulos ; Bernhard Hoffschmidt
Solar tower power plant in Germany and future perspectives of the development of the technology in Greece and Cyprus (2010)
Spiros Alexopoulos ; Bernhard Hoffschmidt
Advances in solar tower technology (2017)
Spiros Alexopoulos ; Bernhard Hoffschmidt
Concentrating Solar Power (2021)
Bernhard Hoffschmidt ; Spiros Alexopoulos ; Christoph Rau ; Johannes Sattler ; Anette Anthrakidis ; Cristiano Teixeira Boura ; B. O’Connor ; R.A. Chico Caminos ; C. Rendón ; P. Hilger
The focus of this chapter is the production of power and the use of the heat produced from concentrated solar thermal power (CSP) systems. The chapter starts with the general theoretical principles of concentrating systems including the description of the concentration ratio, the energy and mass balance. The power conversion systems is the main part where solar-only operation and the increase in operational hours. Solar-only operation include the use of steam turbines, gas turbines, organic Rankine cycles and solar dishes. The operational hours can be increased with hybridization and with storage. Another important topic is the cogeneration where solar cooling, desalination and of heat usage is described. Many examples of commercial CSP power plants as well as research facilities from the past as well as current installed and in operation are described in detail. The chapter closes with economic and environmental aspects and with the future potential of the development of CSP around the world.
Concentrating solar power (2022)
Bernhard Hoffschmidt ; Spiros Alexopoulos ; Christoph Rau ; Johannes Sattler ; Anette Anthrakidis ; Cristiano Teixeira Boura ; B. O’Connor ; R.A. Chico Caminos ; C. Rendón ; P. Hilger
The focus of this chapter is the production of power and the use of the heat produced from concentrated solar thermal power (CSP) systems. The chapter starts with the general theoretical principles of concentrating systems including the description of the concentration ratio, the energy and mass balance. The power conversion systems is the main part where solar-only operation and the increase in operational hours. Solar-only operation include the use of steam turbines, gas turbines, organic Rankine cycles and solar dishes. The operational hours can be increased with hybridization and with storage. Another important topic is the cogeneration where solar cooling, desalination and of heat usage is described. Many examples of commercial CSP power plants as well as research facilities from the past as well as current installed and in operation are described in detail. The chapter closes with economic and environmental aspects and with the future potential of the development of CSP around the world.
High Concentration Solar Collectors (2022)
Bernhard Hoffschmidt ; Spiros Alexopoulos ; Joachim Göttsche ; Markus Sauerborn ; O. Kaufhold
Solar thermal concentrated power is an emerging technology that provides clean electricity for the growing energy market. To the solar thermal concentrated power plant systems belong the parabolic trough, the Fresnel collector, the solar dish, and the central receiver system. For high-concentration solar collector systems, optical and thermal analysis is essential. There exist a number of measurement techniques and systems for the optical and thermal characterization of the efficiency of solar thermal concentrated systems. For each system, structure, components, and specific characteristics types are described. The chapter presents additionally an outline for the calculation of system performance and operation and maintenance topics. One main focus is set to the models of components and their construction details as well as different types on the market. In the later part of this article, different criteria for the choice of technology are analyzed in detail.
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