A new method for the heliostat field optimization is presented. The method is intended for further performance improvement after initial layout with a standard heliostat field layout tool. During the field refinement, the heliostats are repositioned around their original position, without or with little restrictions. A nonsimplifying ray-tracing tool is used for the performance evaluation. During the optimization, detailed local weather and site characteristics (e.g., topography) can be considered. An example case is presented and discussed. This case is based on a field layout for a plant similar to the PS10 solar tower plant in Spain. In this case, an improvement of the annual intercepted energy into the receiver of about 0.8% was achieved, by slightly repositioning the heliostats. Application of the refinement method is recommended for any future solar tower plant. Basically, the optimization improves the revenues while capital and O&M cost remain unchanged. It is expected that any standard heliostat layout can be improved to a certain degree using this method. The method is very flexible and can be easily adapted to specific situations and optimization goals.
Skip Nav Destination
Article navigation
Research-Article
Heliostat Field Layout Improvement by Nonrestricted Refinement
Reiner Buck
Reiner Buck
Deutsches Zentrum für Luft-
und Raumfahrt e.V. (DLR),
e-mail: reiner.buck@dlr.de
und Raumfahrt e.V. (DLR),
Pfaffenwaldring 38-40
,Stuttgart D-70569
, Germany
e-mail: reiner.buck@dlr.de
Search for other works by this author on:
Reiner Buck
Deutsches Zentrum für Luft-
und Raumfahrt e.V. (DLR),
e-mail: reiner.buck@dlr.de
und Raumfahrt e.V. (DLR),
Pfaffenwaldring 38-40
,Stuttgart D-70569
, Germany
e-mail: reiner.buck@dlr.de
Contributed by the Solar Energy Division of ASME for publication in the JOURNAL OF SOLAR ENERGY ENGINEERING. Manuscript received February 23, 2013; final manuscript received August 4, 2013; published online September 19, 2013. Assoc. Editor: Akiba Segal.
J. Sol. Energy Eng. May 2014, 136(2): 021014 (6 pages)
Published Online: September 19, 2013
Article history
Received:
February 23, 2013
Revision Received:
August 4, 2013
Citation
Buck, R. (September 19, 2013). "Heliostat Field Layout Improvement by Nonrestricted Refinement." ASME. J. Sol. Energy Eng. May 2014; 136(2): 021014. https://doi.org/10.1115/1.4025293
Download citation file:
Get Email Alerts
Cited By
Material Selection and Corrosion Studies of Candidate Bearing Materials for Use in Molten Chloride Salt
J. Sol. Energy Eng (April 2023)
Thermal Model of a Parabolic Trough Solar Field With a Closed-Loop Operation During Sunrise Period
J. Sol. Energy Eng (February 2023)
Related Articles
Optical Analysis of a Heliostat Array With Linked Tracking
J. Sol. Energy Eng (August,2013)
Optical Modeling and Analysis of the First Moroccan Linear Fresnel Solar Collector Prototype
J. Sol. Energy Eng (August,2017)
Intercept Factor for a Beam-Down Parabolic Trough Collector
J. Sol. Energy Eng (December,2021)
A New Fast Ray Tracing Tool for High-Precision Simulation of Heliostat Fields
J. Sol. Energy Eng (August,2009)
Related Proceedings Papers
Related Chapters
Fundamentals of Ray Tracing
The Monte Carlo Ray-Trace Method in Radiation Heat Transfer and Applied Optics
Control and Operational Performance
Closed-Cycle Gas Turbines: Operating Experience and Future Potential
Simulation of Historical Time Series Using MPRE, a Focus on Correlation in Squared Returns
International Conference on Future Computer and Communication, 3rd (ICFCC 2011)