
Btu/h 754 685 637 602 572 539 496
Watts 154 156 157 158 159 158 158
Amps 2.23 2.20 2.18 2.19 2.20 2.21 2.23
0
Lb/h 9.44 8.57 7.97 7.53 7.15 6.75 6.21
Btu/h 847 778 730 694 663 628 583
Watts 165 167 169 171 172 173 174
Amps 2.28 2.25 2.23 2.24 2.26 2.28 2.30
5
Lb/h 10.6 9.76 9.15 8.70 8.31 7.88 7.31
Btu/h 945 877 829 792 759 723 674
Watts 177 180 182 185 187 189 190
Amps 2.33 2.29 2.28 2.29 2.31 2.34 2.38
10
Lb/h 11.9 11.0 10.4 9.95 9.54 9.08 8.47
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.998052E+03 1.419440E+02 3.755448E+00 3.745034E+01
C2 1.172486E+01 2.852792E+00 2.196068E-02 1.507294E-01
C3 -5.621852E+01 1.497679E-02 -3.880488E-02 -7.018925E-01
C4 1.303057E-01 1.857467E-02 -8.275453E-05 1.762924E-03
C5 1.328620E-01 -2.306157E-02 -2.811493E-04 1.653960E-03
C6 4.564294E-01 3.119278E-03 3.098016E-04 5.698830E-03
C7 -1.059546E-03 -5.972267E-05 -2.345394E-06 -1.199734E-05
C8 -6.725734E-05 -3.795242E-05 1.186863E-06 -1.089915E-06
C9 -6.954036E-04 1.796578E-04 1.598743E-06 -8.731091E-06
C10 -1.303628E-03 -1.735117E-05 -7.881922E-07 -1.627982E-05
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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