
Btu/h 5780 5740 5510 5250
Watts (Power) 353 480 583 700
Amps 1.55 2.12 2.58 3.10
5
Lb/h 80.8 80.3 77.1 73.4
Btu/h 6240 6200 5960 5680
Watts (Power) 347 478 586 709
Amps 1.52 2.11 2.59 3.14
7.2
Lb/h 87.3 86.8 83.4 79.5
Btu/h 6860 6830 6580 6280
Watts (Power) 336 472 588 721
Amps 1.48 2.10 2.61 3.19
10
Lb/h 96.0 95.5 92.0 87.9
Btu/h 8070 8040 7790 7480
Watts (Power) 309 458 589 741
Amps 1.37 2.04 2.61 3.27
15
Lb/h 113 113 109 105
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.191984E+03 -5.421992E+02 -2.594893E+00 3.070496E+01
C2 1.752499E+02 5.024408E-01 -1.943399E-02 2.451994E+00
C3 1.867146E+02 5.112291E+01 2.409866E-01 2.608203E+00
C4 1.669199E+00 -3.931633E-01 -5.210385E-04 2.337060E-02
C5 6.131002E-01 -1.236833E-01 7.528144E-05 8.528895E-03
C6 -4.110153E+00 -8.902481E-01 -4.288287E-03 -5.741465E-02
C7 2.175750E-03 1.374809E-03 -1.411696E-05 2.907266E-05
C8 2.376814E-02 5.470778E-03 8.215283E-06 3.325636E-04
C9 -1.427147E-02 3.299916E-03 1.042034E-05 -1.991413E-04
C10 2.670034E-02 6.278742E-03 3.036644E-05 3.729273E-04
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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