High-Efficiency Hybrid Regenerator for Cryogenic Applications Using Additive Manufacturing
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Begellhouse
Reference11 articles.
1. Srinivasan, K. V., Manimaran, A., Arulprakasajothi, M., Revanth, M., & Arolkar, V. A. (2019). Design and development of porous regenerator for Stirling cryocooler using additive manufacturing. Thermal Science and Engineering Progress, 11, 195-203. https://doi.org/10.1016/j.tsep.2019.03.013
2. Srinivasan, K. V., Manimaran, A., Arulprakasajothi, M., Pokale, R. D., & Arolkar, V. A. (2019). Theoretical analysis on pressure drop across porous cryocooler regenerator in evaluating the optimum regenerator porosity. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 44(1), 2045-2060. https://doi.org/10.1080/15567036.2019.1649321
3. Srinivasan, K. V., Mahalingam, A., & Metla, R. (2020). Numerical and Experimental Analysis of Additive Manufactured Porous Regenerator for Stirling Cryocooler. 2020 IEEE 10th International Conference Nanomaterials: Applications & Properties (NAP). https://doi.org/10.1109/nap51477.2020.9309642
4. W. Chen, M. Jaeger, K. Rul., Heat Capacity Characterization of a 4K Regenerator with non-Rare Earth Material., International Cryocooler Conference, Inc., Boulder, CO, 2016
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