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Design and investigation of a transcritical R744 refrigerated container for military applications.
IIR document
Design and validation of a transcritical CO2 mobile refrigerated container system for military applications.
Recent progress in compact, low power cryocoolers.
Second-law analysis to improve the energy efficiency of environmental control unit.
Modeling and control strategy of a transcritical carbon dioxide cycle for application in multi-temperature refrigerated container systems.
A portable cooling system based on compression refrigeration.
[In Chinese. / En chinois.]
Improvement and Validation of the System Analysis Model and Code for Heat-Pipe-Cooled Microreactor.
Dynamic modeling and control strategy of a transcritical CO2 cycle for a multi-temperature refrigerated container system for military applications.
Studies of two-phase flow through a sudden expansion using electrical capacitance tomography.
Chiller technologies for marine and fishery sectors.
Modeling of S-RAM energy recover compressor integration in a transcritical carbon dioxide cycle for application in electronics cooling in varying gravity.
Investigation of two-phase injected compression with economization for high temperature application.
Modeling of S-RAM energy recovery compressor integration in a transcritical carbon dioxide cycle for application in multi-temperature refrigerated container systems.
Energy and exergy based impact of avionics thermal management systems on tactical aircraft performance.
Vapor injected compression with economizing in packaged air conditioning systems for high temperature climate.
Refrigeration sector monitoring
1 result
CO2, one of the options for reducing the carbon footprint of refrigerated transport
Comparison of CO2 emissions from refrigerated transport units using R744 and HFC-134a and overview of solutions that could reduce the carbon footprint of this sector.