Analysis of the Working Process and Mechanical Losses in a Stirling Engine for a Solar Power Unit

Author:

Makhkamov Kh. Kh.1,Ingham D. B.2

Affiliation:

1. The Physical and Technical Institute, The Uzbek Academy of Sciences, Mavlynova 2-b, Tashkent, 700084, Uzbekistan

2. Department of Applied Mathematics, The University of Leeds, LEEDS, West Yorkshire, LS2 9JT UK

Abstract

In this paper a second level mathematical model for the computational simulation of the working process of a 1-kW Stirling engine has been used and the results obtained are presented. The internal circuit of the engine in the calculation scheme was divided into five chambers, namely, the expansion space, heater, regenerator, cooler and the compression space, and the governing system of ordinary differential equations for the energy and mass conservation were solved in each chamber by Euler’s method. In additional, mechanical losses in the construction of the engine have been determined and the computational results show that the mechanical losses for this particular design of the Stirling engine may be up to 50% of the indicated power of the engine.

Publisher

ASME International

Subject

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

Reference20 articles.

1. Andraka, C. E., Diver, R., Adkins, D. et al., 1993, “Testing of Stirling Engine Solar Reflux Heat-Pipe Receivers,” Proceedings of the 28th IECEC, Vol. 2, pp. 525–533.

2. Bartolini, C. M. and Caresana, F., 1995, “A New Small Stirling Engine Prototype for Auxiliary Employment Aboard,” Proceedings of the 30th IECEC, Vol. 1–3, C371–C321.

3. Dmitriev, V. A., 1972, “Machine elements”, Sudostroenie, Leningrad.

4. Finkelstein, T., 1965, “Simulation of a Regenerative Reciprocating Machine on an Analogue Computer,” Proceedings of the SAE International Congress on Automotive Engineering, January 11–15 Detroit, Paper 949F.

5. Goebel, O. and Laing, D., 1993, “2nd-Generation Sodium Heat-Pipe Receiver for a USAB V-160 Stirling Engine—Development and ON-SUN Test-Results,” Proceedings of the 28th IECEC, Vol. 2, pp. 539–545.

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