![R 134a is compressed from 200 kPa to 1.0 MPa in an 80% efficient compressor. The condenser exiting temperature is 40^oC. Calculate the COP and the refrigerant mass flux for 100 tons ( R 134a is compressed from 200 kPa to 1.0 MPa in an 80% efficient compressor. The condenser exiting temperature is 40^oC. Calculate the COP and the refrigerant mass flux for 100 tons (](https://homework.study.com/cimages/multimages/16/06.23.6410546270294197163.jpg)
R 134a is compressed from 200 kPa to 1.0 MPa in an 80% efficient compressor. The condenser exiting temperature is 40^oC. Calculate the COP and the refrigerant mass flux for 100 tons (
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Sustainability | Free Full-Text | Impact of Compressor Drive System Efficiency on Air Source Heat Pump Performance for Heating Hot Water
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a). Coefficient of performance (COP) and compressor work (W ̇ comp ) vs... | Download Scientific Diagram
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COP vs. intermediate pressure (pressure between compressor stages) at... | Download Scientific Diagram
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