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International Journal of Refrigeration-revue Internationale Du Froid | 1998

Development of compact heat exchangers for CO2 air-conditioning systems

Jostein Pettersen; Armin Hafner; Geir Skaugen; Havard Rekstad

Abstract Compact and lightweight heat exchangers are needed for motor vehicle air-conditioning systems and for several types of unitary equipment. The high-pressure natural refrigerant CO2 is now being evaluated for use in such applications, and efficient heat exchangers are being developed and investigated. Carbon dioxide heat exchangers are designed for high refrigerant mass flux and use small-diameter tubes or extruded flat microchannel tubes. Refrigerant-side heat transfer coefficients are higher than with fluorocarbons, and reduced internal surface areas can therefore be tolerated. Both small-diameter mechanically expanded round-tube heat exchangers and brazed microchannel-type units have been built and tested successfully. Results show that compact heat exchangers optimized for CO2 are very competitive with baseline HFC/HCFC units in terms of physical dimensions, exchanger mass and thermal performance. Smaller tube and manifold dimensions can give reduced size compared with HFC-134a equipment. The temperature approach between air inlet and refrigerant outlet is much lower in CO2 gas coolers than in baseline system condensers of equal size and capacity, and the reduced refrigerant exit temperature has a marked influence on the coefficient of performance, Microchannel heat exchangers give the best overall efficiency. Refrigerant distribution in multiport manifolds and heat transfer tubes does not seem to be a problem.


International Journal of Refrigeration-revue Internationale Du Froid | 1993

A new, efficient and environmentally benign system for car air-conditioning

Gustav Lorentzen; Jostein Pettersen


Archive | 1991

Method and device for high side pressure regulation in transcritical vapor compression cycle

Gustav Lorentzen; Jostein Pettersen; Roar Rektorli Bang


Archive | 1992

Transcritical vapor compression cycle device with a variable high side volume element

Gustav Lorentzen; Jostein Pettersen


Archive | 1991

Method of high-side pressure regulation in transcritical vapor compression cycle device

Gustav Lorentzen; Jostein Pettersen; Roar Rektorli Bang


Archive | 1991

Control of high-side pressure in transcritical vapor compression cycle

Gustav Lorentzen; Jostein Pettersen; Roar Rektorli Bang


Archive | 2003

Method of operation and regulation of a vapour compression system

Kare Aflekt; Armin Hafner; Arne Jakobsen; Petter Neksa; Jostein Pettersen; Havard Rekstad; Geir Skaugen; Trond Andresen; Espen Tondell; Munan Elgsaether


Archive | 2004

Life Cycle Climate Performance (LCCP) of Mobile Air-Conditioning Systems with HFC-134a, HFC-152a and R-744

Armin Hafner; Petter Neksa; Jostein Pettersen


Archive | 2003

Vapour compression heat pump system

Kare Aflekt; Armin Hafner; Arne Jakobsen; Petter Neksa; Jostein Pettersen; Havard Rekstad; Geir Skaugen; Trond Andresen; Espen Tondell; Munan Elgsaether


Archive | 2004

IMPROVED VAPOUR COMPRESSION HEAT PUMP SYSTEM

Kare Aflekt; Armin Hafner; Arne Jakobsen; Petter Neksa; Jostein Pettersen; Havard Rekstad; Geir Skaugen; Trond Andresen; Espen Tondell; Munan Elgsaether

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Armin Hafner

University of Science and Technology

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Petter Neksa

University of Science and Technology

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Kare Aflekt

Norwegian University of Science and Technology

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Armin Hafner

University of Science and Technology

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