C07 Multistage Thermoacoustic Stirling Engine Electric Generator
Kei Takao, Tetsushi Biwa
Abstract
Open-access reader
Kei Takao, Tetsushi Biwa
Abstract
Open-access reader
We designed and built a multistage thermoacoustic Stirling engine electric generator prototype. Use of three regenerators aligned in series, not in parallel, makes it different from ordinary Stirling engines. The prototype thermally amplifies the input acoustic power through the Stirling thermodynamic cycles and converts the amplified acoustic power into electricity. Although the gain of acoustic power was 1.76 with a single regenerator, it reached 5.1 when three regenerators were used. The Stirling engine that we developed can function at a low temperature differential.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We designed and built a multistage thermoacoustic Stirling engine electric generator prototype. Use of three regenerators aligned in series, not in parallel, makes it different from ordinary Stirling engines. The prototype thermally amplifies the input acoustic power through the Stirling thermodynamic cycles and converts the amplified acoustic power into electricity. Although the gain of acoustic power was 1.76 with a single regenerator, it reached 5.1 when three regenerators were used. The Stirling engine that we developed can function at a low temperature differential.
Key concepts: Stirling engine, Regenerative heat exchanger, Thermoacoustic heat engine, Thermoacoustics, Stirling cycle, Electric generator, Generator (circuit theory), Heat engine