
Btu/h 10200 9560 8880 8220
Watts (Power) 625 760 900 1060
Amps 2.45 2.80 3.45 4.11
5
Lb/h 140 131 122 113
Btu/h 10800 10300 9660 8970
Watts (Power) 607 751 900 1070
Amps 2.40 2.78 3.47 4.15
7.2
Lb/h 148 141 132 123
Btu/h 11700 11400 10800 10100
Watts (Power) 582 738 898 1080
Amps 2.31 2.75 3.48 4.20
10
Lb/h 160 156 148 139
Btu/h 13400 13600 13300 12700
Watts (Power) 547 726 908 1110
Amps 2.10 2.63 3.44 4.22
15
Lb/h 184 186 182 174
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.142458E+04 1.480676E+02 6.890059E+00 1.565217E+02
C2 -5.567038E+01 -9.718144E+00 -8.848786E-02 -7.634818E-01
C3 -6.709156E+01 2.354073E+01 -3.352056E-01 -9.202309E-01
C4 -4.826712E+00 -1.368382E+00 -9.789607E-04 -6.608506E-02
C5 1.489277E+01 4.155812E-01 3.019354E-03 2.040382E-01
C6 -8.993882E-01 -3.274210E-01 7.907575E-03 -1.229835E-02
C7 3.623998E-02 4.606504E-02 -1.444652E-05 4.950307E-04
C8 3.003564E-01 4.589246E-03 3.190940E-06 4.114332E-03
C9 -1.842118E-01 -9.720610E-04 -1.696661E-05 -2.523709E-03
C10 1.321736E-02 2.984725E-03 -5.218574E-05 1.809220E-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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