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Modified Reverse Rankine Refrigeration Cycle -- Sook Jin Goh https://www.linkedin.com/pulse/modified-reverse-rankine-cycle-refrigeration-sook-jin-sook-jin-goh/

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Published: 30 Mar 2024 › Updated: 30 Mar 2024Modified Reverse Rankine Refrigeration Cycle -- Sook Jin Goh  https://www.linkedin.com/pulse/modified-reverse-rankine-cycle-refrigeration-sook-jin-sook-jin-goh/

Modified Reverse Rankine Refrigeration Cycle -- Sook Jin Goh https://www.linkedin.com/pulse/modified-reverse-rankine-cycle-refrigeration-sook-jin-sook-jin-goh/

https://media.licdn.com/dms/image/D5612AQHkq0LGFeEODA/article-cover_image-shrink_720_1280/0/1711596962211?e=1717027200&v=beta&t=CYhTKX_i-Sl_gIZQ-KvBlqqUlir6lTAO2FyFbBMgLws

Assuming Isentropic Compression, Isobaric Cooling, Isobaric Condensation, Isobaric Subcooling, Adiabatic Expansion & Isobaric Evaporation, then:

Compressor Power, P꜀ = Carnot Work + Finite Heat-transfer Loss + Superheating Loss + Subcooling Loss

#Chiller
#ReverseRankineCycle
#SecondLawofThermodynamics
#SadiCarnot
#FiniteHeatTransfer
#Superheat
#SuperheatedHorn
#Subcool
#Compressor
#ExpansionValve
#Throttle
#Condenser
#Evaporator
#Refrigerant
#Fouling
#TemperatureEntropy
#IsentropicCompression
#IsobaricCooling
#IsobaricCondensation
#IsobaricSubCooling
#AdiabaticExpansion
#IsobaricEvaporation


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