Paper
9 March 2014 Photoresponsive polymer design for solar concentrator self-steering heliostats
Jessica Barker, Amod Basnet, Moinak Bhaduri, Caroline Burch, Amenda Chow, Xue Li, William S. Oates, Jordan E. Massad, Ralph Smith
Author Affiliations +
Abstract
Concentrating solar energy and transforming it into electricity is clean, economical and renewable. One design of solar power plants consists of an array of heliostats which redirects sunlight to a fixed receiver tower and the generated heat is converted into electricity. Currently, the angles of elevation of heliostats are controlled by motors and drives that are costly and require diverting power that can otherwise be used for producing electricity. We consider replacing the motor and drive system of the heliostat with a photosensitive polymer design that can tilt the mirror using the ability of the polymer to deform when subjected to light. The light causes the underlying molecular structure to change and subsequently, the polymer deforms. The deformation of the polymer is quantified in terms of photostrictive constitutive relations. A mathematical model is derived governing the behaviour of the angle of elevation as the photostrain varies. Photostrain depends on the composition of the polymer, intensity and temperature of light and angle of light polarization. Preliminary findings show a photomechanical rod structural design can provide 60° elevation for temperatures of about 40°C. A photomechanical beam structural design can generate more tilt at lower temperatures. The mathematical analysis illustrates that photostrains on the order of 1% to 10% are desired for both rod and beam designs to produce sufficient tilt under most heliostat field conditions.
© (2014) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Jessica Barker, Amod Basnet, Moinak Bhaduri, Caroline Burch, Amenda Chow, Xue Li, William S. Oates, Jordan E. Massad, and Ralph Smith "Photoresponsive polymer design for solar concentrator self-steering heliostats", Proc. SPIE 9057, Active and Passive Smart Structures and Integrated Systems 2014, 90572L (9 March 2014); https://doi.org/10.1117/12.2045964
Lens.org Logo
CITATIONS
Cited by 1 scholarly publication.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Picosecond phenomena

Polymers

Mirrors

Polarization

Solar energy

Receivers

Structural design

RELATED CONTENT

High heat flux engineering in solar energy applications
Proceedings of SPIE (November 12 1993)
Principles Of The Fixed Mirror Solar Concentrator
Proceedings of SPIE (February 15 1977)
A Comparison Of Tracking Methods For Solar Concentrators
Proceedings of SPIE (January 05 1984)
Performance Of A 3 . 7 Meter Cylindrical Concentrator
Proceedings of SPIE (March 16 1976)
A Line Focus Segmented Mirror Concentrator
Proceedings of SPIE (February 15 1977)

Back to Top