A highly efficient heat-driven thermoacoustic cooling system: Detailed study
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference31 articles.
1. Influence of capillary tube length on the performance of domestic refrigerator with eco-friendly refrigerant R152a;Baskaran;Sci Rep,2022
2. A multicriteria approach to choose the best renewable refrigeration system for food preservation;Rech;Renew Energy,2020
3. Co-designing electronics with microfluidics for more sustainable cooling;van Erp;Nature,2020
4. Peptide-DNA origami as a cryoprotectant for cell preservation;Lee;Sci Adv,2022
5. NASA cryocooler technology developments and goals to achieve zero boil-off and to liquefy cryogenic propellants for space exploration;Plachta;Cryogenics,2018
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