A High-Pressure Window for Volumetric Solar Receivers

Author:

Karni J.1,Kribus A.1,Ostraich B.2,Kochavi E.2

Affiliation:

1. Environmental Sciences and Energy Research Department, The Weizmann Institute of Science Rehovot 76100, Israel

2. Rotem Industries, Ltd., P.O.B. 9046, Beer Sheva 84190, Israel

Abstract

The absorbing matrix of a volumetric (directly irradiated) solar receiver must be exposed to the concentrated incoming sunlight. Most applications require that the receiver operates at an elevated pressure and in many cases the working fluid is not air. These requirements can be met only if the receiver is equipped with a transparent window. A novel frustum-like high-pressure (FLHiP) window, made of fused silica, is presented. Optical, mechanical, and thermal analyses, over 1,000 hours of accelerated life-time tests and several hundred hours of tests in a solar receiver, show that this window satisfies the required criteria for operation in a volumetric solar receiver, whose operating pressure and peak absorber temperature reach 30 bar and 1700°C, respectively.

Publisher

ASME International

Subject

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

Reference30 articles.

1. Abele, M., Bauer, H., Buck, R., Tamme, R., and Wo¨rner, A., 1996, “Design and Test Results of a Receiver-Reactor for Solar Methane Reforming,” Proc. ASME Solar Engineering 1996, ASME, New York, pp. 339–346.

2. Anikeev, V. I., Bobrin, A. S., and Kirillov, V. A., 1992, “New Conception of Catalytic Volumetric Reactor-Receiver,” Proc. 6 International Symp. Solar Thermal Concentrating Technologies, Vol. 1, pp. 387–394.

3. Becker, M., Gupta, B., Meinecke, W., and Bohn, M., 1995, Solar Energy Concentrating Systems—Applications and Technologies, C. F. Mu¨ller Verlag, Heidelberg, Germany.

4. Buck, R., 1990, “Test and Calculations for a Volumetric Ceramic Receiver,” Solar Thermal Technology—Research Development and Applications, Proc. 4 International Symp., B. P. Gupta, and W. H. Traugott, eds. Hemisphere, New York, pp. 279–286.

5. Buck, R., Heller, P., and Koch, H., 1996, “Receiver Development for a Dish-Brayton System,” Proc. ASME Solar Engineering 1996, ASME, New York, pp. 91–96.

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