Detailed Performance Analysis of a 10kW Dish∕Stirling System

Author:

Reinalter W.1,Ulmer S.1,Heller P.1,Rauch T.1,Gineste J.-M.2,Ferriere A.2,Nepveu F.2

Affiliation:

1. German Aerospace Center (DLR), Institute of Technical Thermodynamics, Pfaffenwaldring 38-40, D-70569 Stuttgart, Germany; Plataforma Solar de Almería (PSA), 04200 Tabernas, Spain

2. PROMES-CNRS Laboratory, 7 rue du Four Solaire, 66120 Font-Romeu, France

Abstract

The CNRS-Promes dish∕Stirling system was erected in Jun. 2004 as the last of three country reference units built in the “Envirodish” project. It represents the latest development step of the EuroDish system with many improved components. With a measured peak of 11kW electrical output power, it is also the best performing system so far. The measurement campaign to determine the optical and thermodynamic efficiency of the system is presented. The optical quality of the concentrator and the energy input to the power conversion unit was measured with a classical flux-mapping system using a Lambertian target and a charge coupled device camera system. An efficiency of the concentrator including the intercept losses of 74.4% could be defined for this particular system. For the thermodynamic analysis all the data necessary for a complete energy balance around the Stirling engine were measured or approximated by calculations. For the given ambient conditions during the tests, a Stirling engine efficiency of 39.4% could be measured. The overall efficiency for the conversion of solar to electric energy was 22.5%.

Publisher

ASME International

Subject

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

Reference7 articles.

1. Incident Solar Radiation Data at Odeillo Solar Furnaces;Gineste;J. Phys. IV

2. Ulmer, S. , 2004, “Messung der Strahlungsflussdichte-Verteilung von Punktkonzentrierenden Solarthermischen Kraftwerken,” dissertation, Fortschritt-Bericht VDI Reihe 6 Nr. 510, Düsseldorf.

3. Beam Characterization and Improvement With a Flux Mapping System for Dish Concentrators;Ulmer;ASME J. Sol. Energy Eng.

4. Experimentally Validated Long-Term Energy Production Prediction Model for Solar Dish∕Stirling Electric Generating Systems;Stine

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