2001The Proceedings of the Symposium on Stirlling CycleOpen access

C04 Consideration of Regenerator Using for a 3 kW Stirling Engine

Noboru Kagawa, Atsushi MATSUGUCHI, Seizo Tsuruno

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Abstract

Regenerator losses of two 3-kW Stirling engines are analyzed in detail to optimize the regenerators. A fifty-percent indicated efficiency and a lower regenerator loss were obtained by adopting a unique cylinder arrangement and a well-designed heat exchanger system. To clarify the regenerator performance, the losses are adequately evaluated by using reliable experimental data and are analyzed by a mathematical model. Based on these analysis results and optimizing processes during the engine improvements, a design method for regenerators of practical engine was established and was introduced in this report.

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Regenerator losses of two 3-kW Stirling engines are analyzed in detail to optimize the regenerators. A fifty-percent indicated efficiency and a lower regenerator loss were obtained by adopting a unique cylinder arrangement and a well-designed heat exchanger system. To clarify the regenerator performance, the losses are adequately evaluated by using reliable experimental data and are analyzed by a mathematical model. Based on these analysis results and optimizing processes during the engine improvements, a design method for regenerators of practical engine was established and was introduced in this report.

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Available abstract

Regenerator losses of two 3-kW Stirling engines are analyzed in detail to optimize the regenerators. A fifty-percent indicated efficiency and a lower regenerator loss were obtained by adopting a unique cylinder arrangement and a well-designed heat exchanger system. To clarify the regenerator performance, the losses are adequately evaluated by using reliable experimental data and are analyzed by a mathematical model. Based on these analysis results and optimizing processes during the engine improvements, a design method for regenerators of practical engine was established and was introduced in this report.

Key concepts: Regenerative heat exchanger, Stirling engine, Stirling cycle, Heat exchanger, Cylinder, Mechanical engineering, Automotive engineering, Computer science

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