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Design of a High Flux Beam Characterization Device for Falling Particle Receivers

Journal Article · · SolarPACES Conference Proceedings

This paper outlines the design and error analysis for a flux characterization device (i.e. flux wand) which traverses the aperture of a falling particle receiver cavity providing the incident power measurement needed for the calculation of receiver efficiency without significantly disrupting receiver output. The design features a linear actuator, water cooled extension arm, and refractory bar. The refractory bar/flux wand is a diffusely reflective surface which reflects light as it is translated across the receiver aperture to provide a light intensity distribution that is correlated to a measured flux. The component sizing, constrained by a typical 30 frame per second camera and a 4-point average of the measured reflectance, is presented. Simulation reveals the error that results from a 5% variation in flux wand reflectance is within 4% of the true value.

Sponsoring Organization:
USDOE
Grant/Contract Number:
EE0008730
OSTI ID:
2325101
Journal Information:
SolarPACES Conference Proceedings, Journal Name: SolarPACES Conference Proceedings Vol. 1; ISSN 2751-9899
Publisher:
TIB Open PublishingCopyright Statement
Country of Publication:
Country unknown/Code not available
Language:
English

References (4)

Hybrid heat flux measurement system for solar central receiver evaluation journal April 2004
In-situ measurement of concentrated solar flux and distribution at the aperture of a central solar receiver conference January 2016
A Photographic Flux Mapping Method for Concentrating Solar Collectors and Receivers journal July 2012
Techniques to Measure Solar Flux Density Distribution on Large-Scale Receivers journal May 2014

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