Thermoacoustic Refrigerators and Heat Pumps: New Insights for A High Performance

Author:

Alamir Mahmoud A.,Che Sidik Nor Azwadi

Abstract

Thermoacoustic refrigerators and heat pumps are considered one of the important emerging green technologies. They are based on the use of acoustic pressure waves to supply cooling or heating effects. The oscillating gas interaction with a solid wall called the stack generates thermoacoustic effects. This study presents the effects of the operating conditions and geometric parameters on the temperature difference across the stack and the coefficient of performance of a thermoacoustic heat pump at different cooling loads. The design steps of these systems were also demonstrated. Theoretical study of the operation conditions and geometric parameters was presented using “DeltaEC”. The results showed that higher harmonics are less desirable for thermoacoustic phenomena as they lower the temperature difference across the stack. Further insights into the effects of amplitude pressure, mean pressure and stack geometries were also demonstrated. This study helps to establish the concepts and design steps for thermoacoustic refrigerators and heat pumps.

Publisher

Akademia Baru Publishing

Subject

Fluid Flow and Transfer Processes

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Design, Manufacturing Process, and Performance Testing of Thermoacoustic Refrigerator;2023 1st International Conference on Advanced Engineering and Technologies (ICONNIC);2023-10-14

2. Design and Optimization of a Standing-Wave Thermoacoustic Refrigerator Using DELTAEC;Diyala Journal of Engineering Sciences;2023-04-18

3. Design methodology of standing-wave thermoacoustic refrigerator: theoretical analysis;International Journal of Air-Conditioning and Refrigeration;2023-03-14

4. The impact of stack parameters on the temperature difference of a thermoacoustic cooler;Thermal Science;2022

5. Temperature Drop for Thermoacoustic Cooler with Different Stack Materials Using DeltaEC Model;Lecture Notes in Mechanical Engineering;2022

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