
Btu/h 9300 8440 7580 6720 5860 5000 4150
Watts 1480 1520 1560 1600 1630 1670 1700
Amps 7.08 7.23 7.39 7.54 7.70 7.85 8.00
0
Lb/h 158 153 148 142 137 131 126
Btu/h 10400 9460 8520 7590 6660 5730 4800
Watts 1560 1610 1650 1700 1740 1780 1830
Amps 7.39 7.59 7.78 7.97 8.16 8.34 8.53
5
Lb/h 180 174 168 162 157 151 145
Btu/h 11500 10500 9520 8520 7510 6510 5500
Watts 1640 1690 1740 1800 1850 1900 1950
Amps 7.72 7.95 8.17 8.40 8.63 8.85 9.08
10
Lb/h 203 196 190 184 177 171 165
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.619062E+04 1.178066E+03 5.824367E+00 2.017017E+02
C2 3.273917E+02 3.617495E+00 3.233912E-03 4.806947E+00
C3 -8.609637E+01 3.780956E+00 1.558604E-02 -5.442367E-01
C4 1.193704E+00 1.286693E-02 1.688661E-04 3.387137E-02
C5 -1.441080E+00 1.473716E-01 7.304522E-04 -7.986385E-03
C6 -1.073920E-03 1.377001E-03 3.483982E-06 7.156311E-05
C7 -8.552645E-04 2.665003E-05 2.134557E-07 -1.206448E-04
C8 -5.193939E-04 5.515397E-06 1.637722E-07 -5.580816E-05
C9 -5.787045E-05 2.479213E-06 3.371226E-08 -3.293367E-06
C10 1.082171E-05 -1.131798E-05 -2.879801E-08 -3.184566E-07
Value = C1 + C2 * Te + C4 * Te^2 + C7 * Te^3 + (C3 + C5 * Te + C8 * Te^2) * Tc + (C6 + C9 * Te) * Tc^2 + C10 * Tc^3
Te = Evaporator Temperature
Tc = Condensing Temperature
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