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Date of download: 12/24/2017 Copyright © ASME. All rights reserved.

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1 Date of download: 12/24/2017 Copyright © ASME. All rights reserved. From: Viability of Spray Cooling an Air-Cooled Condenser in a Personnel Microclimate Cooling System J. Thermal Sci. Eng. Appl. 2012;4(4): doi: / Figure Legend: The ideal vapor compression cycle. To determine the required compressor displacement rate, R, the analysis assumes the system will achieve a 150 W cooling capacity with a 16 °C Te, 44 °C Tc, and 35 °C Tamb.

2 Date of download: 12/24/2017 Copyright © ASME. All rights reserved. From: Viability of Spray Cooling an Air-Cooled Condenser in a Personnel Microclimate Cooling System J. Thermal Sci. Eng. Appl. 2012;4(4): doi: / Figure Legend: The complete model microclimate cooling system

3 Date of download: 12/24/2017 Copyright © ASME. All rights reserved. From: Viability of Spray Cooling an Air-Cooled Condenser in a Personnel Microclimate Cooling System J. Thermal Sci. Eng. Appl. 2012;4(4): doi: / Figure Legend: Refrigerating capacity and power requirement for the model ideal compressor

4 Date of download: 12/24/2017 Copyright © ASME. All rights reserved. From: Viability of Spray Cooling an Air-Cooled Condenser in a Personnel Microclimate Cooling System J. Thermal Sci. Eng. Appl. 2012;4(4): doi: / Figure Legend: Flow chart for the mathematical method

5 Date of download: 12/24/2017 Copyright © ASME. All rights reserved. From: Viability of Spray Cooling an Air-Cooled Condenser in a Personnel Microclimate Cooling System J. Thermal Sci. Eng. Appl. 2012;4(4): doi: / Figure Legend: (Ideal) Compressor power required with a water inlet temperature of 24 °C and various ambient air temperatures

6 Date of download: 12/24/2017 Copyright © ASME. All rights reserved. From: Viability of Spray Cooling an Air-Cooled Condenser in a Personnel Microclimate Cooling System J. Thermal Sci. Eng. Appl. 2012;4(4): doi: / Figure Legend: Psychrometric chart for determining the new relative humidity at the desired temperature after spray cooling


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