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Roadmap to Advance Heliostat Technologies for High Temperature Solar-Thermal Systems

  • Schell Innovation Ventures
  • National Laboratory of the Rockies
  • Sandia National Laboratories
  • Queensland University of Technology
  • University of Adelaide

Research output: NLRTechnical Report

Abstract

Since its establishment, the Heliostat Consortium (HelioCon) has made substantial progress toward closing many of the gaps in concentrating solar power (CSP) research. Numerous techno-economic studies have been performed, investigating topics ranging from the trade-off between size and temperature for industrial process heat applications to optimization of the heliostat design itself for various applications. Significant improvements have been made in optical metrology techniques, with first steps toward in situ measurement of heliostat fields. Several standards have been, and continue to be, developed with the coordination of an international group of CSP industry participants. Training programs have been developed, with universities including CSP in their engineering curricula, and many public webinars have been held to provide broad access to the latest CSP research. Improved CSP components such as mirror facets and wireless communication systems have been developed, and the solar tower at Sandia National Laboratories has been upgraded with a testbed for closed-loop controls research and development. Field deployment challenges involving heliostat foundations and sensitive wildlife habitats have been explored, with progress made toward methods for streamlining project development and permitting. Additional knowledge has been added to the body of work on wind behavior of heliostats and arrays of heliostats, with progress made toward a holistic understanding of wind design methods. Finally, techniques have been developed and demonstrated for assessing soiling conditions at a proposed project site, with predictive models for the soiling rate showing good results. Taking these results together, HelioCon has contributed greatly to the global CSP research and development effort over the past several years.
Original languageAmerican English
Number of pages213
DOIs
StatePublished - 2026

NLR Publication Number

  • NLR/TP-5700-97216

Keywords

  • concentrating solar power
  • concentrating solar-thermal power
  • CSP
  • HelioCon
  • Heliostat Consortium
  • roadmap

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