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Heat exchange efficiency is an important property of working media used in heat transfer devices.
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Thus, the physical properties of working fluids are the foundation of cycle analysis.
Special attention is paid to the relationship between properties of working fluids and efficiency.
An accurate prediction for thermodynamic properties of working fluids is of great importance for cycle performance evaluations and system design.
It is shown that the thermodynamic properties of working fluids used in Stirling engines change according to the temperature.
The thermal properties of working fluid in the solar collector have been improved by using different concentrated nano-particles.
In addition to the type of the applied geometry, the thermal properties of working fluid are also important in heat transfer processes.
However, a high temperature could directly influence the electrospinning processes by accelerating the solvent evaporation while indirectly influencing the physicochemical properties of working fluids, which is neglected previously.
In contrast, passive heat transfer enhancement can be achieved by changing flow geometry or modifying thermo-physical properties of working fluid.
For system level modeling with real properties of working fluids, EES (engineering equation solver) and EBSILON (a commercial thermal system design tool) are being used in this work.
A novel parameter αV/ρcp is proposed to identify the influence of physical properties of working fluid on the performance of pump.
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