Modelling and Evaluation of the Thermohydraulic Performance of Finned-Tube Supercritical Carbon Dioxide Gas Coolers
Author:
Publisher
Springer Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-33-4765-6_71
Reference12 articles.
1. J.M. Yin, C.W. Bullard, P.S. Hrnjak, R-744 gas cooler model development and validation. Int. J. Refrig 24, 692–701 (2001)
2. P. Asinari, L. Cecchinato, E. Fornasieri, Effects of thermal conduction in microchannel gas coolers for carbon dioxide. Int. J. Refrig 27, 577–586 (2004)
3. Y.T. Ge, R.T. Cropper, Simulation and performance evaluation of finned-tube CO2 gas coolers for refrigeration systems. Appl. Thermal Eng. 29, 957–965 (2009)
4. D.K. Gupta, M.S. Dasgupta, Simulation and performance optimization of finned tube gas cooler for trans-critical CO2 refrigeration system in Indian context. Int. J. Refrig 38, 153–167 (2014)
5. J.B. Marcinichen, J.R. Thome, R.H. Pereira, Working fluid charge reduction. Part II: Supercritical CO2 gas cooler designed for light commercial appliances. Int. J. Refrig. 65, 273–286 (2016)
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