Design and Comparative Analysis of Thermoacoustic Refrigerators

Author:

Prashantha B. G.1,Gowda M. S. Govinde2,Seetharamu S.3,Narasimham G. S. V. L.4

Affiliation:

1. Department of Industrial Engineering & Management, JSS Academy of Technical Education, Dr. Vishnuvardhana Road, Bangalore-560 060, India

2. Vivekananda College of Engineering & Technology, Nehru Nagar, Puttur, Dakshina Kannada, Karnataka-574 203, India

3. Director (Retd), Central Power Research Institute, Bangalore-560 080, India

4. Department of Mechanical Engineering, Indian Institute of Science, Bangalore-560 012, India

Abstract

In this paper, the design of a loudspeaker driven 10[Formula: see text]W cooling power stack-based thermoacoustic refrigerator at 3% drive ratio for a temperature difference of 80[Formula: see text]K using helium as working fluid is discussed. The refrigerator is designed using linear thermoacoustic concepts. Using linear thermoacoustic equations, a theoretical minimum cold heat exchanger temperature is estimated at 75% porosity of stack-heat exchanger system. This paper focuses on the comparative analysis of the present design with the similar 10[Formula: see text]W thermoacoustic refrigerator designs found in the literature. The theoretical performance comparison of TSDH, TDH and CDH resonators designed at 2% and 3% drive ratio is discussed. The resonator designs are validated using DeltaEC software and the results are discussed. DeltaEC simulation results show that the diameter of the vibrating diaphragm of the loudspeaker equal to the diameter of the stack-heat exchangers system has higher electroacoustic efficiency (74.7%) and better performance compared to the smaller diaphragm (42.6%) used in the past research.

Publisher

Springer Science and Business Media LLC

Subject

Fluid Flow and Transfer Processes,Renewable Energy, Sustainability and the Environment,Control and Systems Engineering

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1. Design and analysis of thermoacoustic air source heat pump water heaters;International Journal of Air-Conditioning and Refrigeration;2024-08-02

2. Hydrogen, helium and thermo-acoustic refrigerators;International Journal of Air-Conditioning and Refrigeration;2023-09-20

3. Effect of gas spacing and resonance frequency on theoretical performance of thermoacoustic refrigerators;International Journal of Air-Conditioning and Refrigeration;2023-04-28

4. Theoretical evaluation of stack-based thermoacoustic refrigerators;International Journal of Air-Conditioning and Refrigeration;2022-07-28

5. CFD Modeling and Performance Analysis of a Thermoacoustically Driven Thermoacoustic Refrigerator;International Journal of Air-Conditioning and Refrigeration;2021-09-23

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