Energy and Exergy Analyses of CO2/HFE7000 Cascade Cooling System
Öz
Anahtar Kelimeler
Kaynakça
- [1] Annex 49, 2007. Energy Conservation in Buildings and Community Systems Low Exergy Systems for High Performance Buildings and Communities, homepage: http://www.annex49.com,
- [2] Chakravarthy, V.S., Shah, R.K., Venkatarathnam, G., 2011. A review of refrigeration methods in the temperature range 4-300K. Journal of Thermal Science and Engineering Applications, 3(2011), 1-18.
- [3] Yulong, S., Dongzhe, L., Dongfang, Y., Lei, Jin, Feng, C., Xiaolin W. 2017. Performance comparison between the combined R134a/CO2 heat pump and cascade R134a/CO2 heat pump for space heating, International journal of Refrigeration, 74,(2017), 592–605
- [4] Sarkar, J., Bhattacharyya, S., Gopal, M.R. 2006. Simulation of a transcritical CO2 heat pump cycle for simultaneous cooling and heating applications. Int. J. Refrigeration, 29(2006), 735–743.
- [5] Mosaffa, A.H., L. Farshi G. C.A. 2016. Infante Ferreira, M.A. Rosen, Exergoeconomic and environmental analyses of CO2/NH3 cascade refrigeration systems equipped with different types of flash tank intercoolers, Energy Conversion and Management 117 (2016) 442–453
- [6] Lee, TS., Liu, CH., Chen, TW. 2006. Thermodynamic analysis of optimal condensing temperature of cascade-condenser in CO2/NH3 cascade refrigeration systems. Int J Refrig, 29(2006), 1100–8.
- [7] Kilicarslan, A., Hosoz, M. 2010. Energy and irreversibility analysis of a cascade refrigeration system for various refrigerant couples. Energy Convers Manage, 51 (2010), 2947–54.
- [8] Yılmaz, F., Selbas, R., Ozgur, A.E., Balta, M.T. 2016. Performance Analyses of CO2-N2O Cascade System for Cooling. Energy, Transportation and Global Warming, Green Energy and Technology, Elsevier, DOI 10.1007/978-3-319-30127-3_37.
Ayrıntılar
Birincil Dil
Türkçe
Konular
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Bölüm
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Yayımlanma Tarihi
30 Ekim 2017
Gönderilme Tarihi
25 Nisan 2017
Kabul Tarihi
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Yayımlandığı Sayı
Yıl 2017 Cilt: 21 Sayı: 3
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