Refrigerant R134A Vapor Pressure Table
The vapor pressure table for every refrigerant is published in literature for the refrigeration system engineers. This table makes it possible to determine the vapor pressure acting on the column of liquid in a container if the temperature of the container is known.
Because each refrigerant has its own characteristic vapor pressure table, refrigerant can be identified by measuring the pressure and temperature.
At absolute pressure, "0 bar" corresponds to absolute vacuum. Normal ambient pressure (positive pressure) equals approximately "1 bar" absolute pressure. "0 bar" pressure corresponds to an absolute pressure of one bar on most pressure gauges (indicated by "-1 bar" below "0").
Pressure is measured in different units: 1 MPa (mega Pascal) corresponds to 10 bar positive pressure or 145 psi. 1 bar absolute pressure corresponds to 0 bar positive pressure and thus to the ambient pressure (atmospheric pressure).
| Temperature in °C | Pressure in bar (positive pressure) of R134a |
|---|---|
| -45 | -0.61 |
| -40 | -0.49 |
| -35 | -0.34 |
| -30 | -0.16 |
| -25 | 0.06 |
| -20 | 0.32 |
| -15 | 0.63 |
| -10 | 1.00 |
| -5 | 1.43 |
| 0 | 1.92 |
| 5 | 2.49 |
| 10 | 3.13 |
| 15 | 3.90 |
| 20 | 4.70 |
| 25 | 5.63 |
| 30 | 6.70 |
| 35 | 7.83 |
| 40 | 9.10 |
| 45 | 10.54 |
| 50 | 12.11 |
| 55 | 13.83 |
| 60 | 15.72 |
| 65 | 17.79 |
| 70 | 20.05 |
| 75 | 22.52 |
| 80 | 25.21 |
| 85 | 28.14 |
| 90 | 31.34 |