A New 75 kW High-Flux Solar Simulator for High-Temperature Thermal and Thermochemical Research

Author:

Hirsch, D.1,Zedtwitz, and P. v.1,Osinga T.1,Kinamore J.2,Steinfeld A.34

Affiliation:

1. Institute of Energy Technology, Department of Mechanical and Process Engineering, ETH-Swiss Federal Institute of Technology, ETH-Zentrum, CH-8092 Zurich, Switzerland

2. Vortek Industries Ltd., Vancouver BC, V6P 6T7 Canada

3. Institute of Energy Technology, ETH-Swiss Federal Institute of Technology, CH-8092 Zurich, Switzerland

4. Solar Process Technology, Paul Scherrer Institute, CH-5232 Villigen, Switzerland

Abstract

A new high-flux solar simulator, capable of delivering up to 75 kW of continuous radiative power at peak fluxes exceeding 4250 kW/m2, is operational at the ETH-Zurich. Its optical design and performance are described. This unique facility serves principally as an experimental platform for investigating thermal and thermochemical processes at temperatures up to 3000°K.

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference7 articles.

1. Vortek Industries Ltd., 1999, Model 201-200/200 200 kW Arc Lamp System, Vancouver BC, V6P 6T7 Canada.

2. Welford, W.T., and Winston, R., 1989, High Collection Nonimaging Optics, Academic Press, San Diego, CA.

3. Seitz, T., 1995, “SunFlux: A Flux Measurement System for Solar Concentrators,” SolarPACES Technical Report No. III-2/95, A. Newmann, ed., DLR, 51140 Cologne, Germany, pp. 45–54.

4. SolarPACES, 1996, Solar Thermal Test Facilities, Editorial CIEMAT, Madrid.

5. Steinfeld, A., and Schubnell, M., 1993, “Optimum Aperture Size and Operating Temperature of a Solar Cavity-Receiver,” Sol. Energy, 50, pp. 19–25.

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