
Btu/h 5530 4980 4440 3900 3360 2820 2280
Watts 831 842 852 863 872 882 891
Amps 3.57 3.62 3.68 3.73 3.78 3.83 3.88
0
Lb/h 96.7 92.0 87.3 82.6 77.9 73.2 68.4
Btu/h 6230 5630 5030 4430 3840 3240 2650
Watts 868 884 900 915 930 945 959
Amps 3.72 3.79 3.87 3.94 4.01 4.08 4.16
5
Lb/h 110 105 99.8 94.8 89.9 84.9 79.8
Btu/h 6970 6310 5660 5000 4350 3700 3050
Watts 905 927 947 968 988 1010 1030
Amps 3.86 3.96 4.05 4.15 4.24 4.33 4.42
10
Lb/h 124 119 113 108 103 97.7 92.4
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 9.884110E+03 7.436901E+02 3.143735E+00 1.339354E+02
C2 2.252437E+02 -8.904840E-01 -4.551183E-03 2.962166E+00
C3 -5.448627E+01 1.079302E+00 5.189284E-03 -4.642855E-01
C4 8.122678E-01 -6.317711E-03 3.375941E-06 1.868129E-02
C5 -1.099673E+00 1.026677E-01 4.345396E-04 -5.805964E-03
C6 -1.602960E-03 7.527795E-04 3.876288E-06 -1.095519E-06
C7 -2.555685E-03 3.104472E-04 -2.192794E-06 6.296178E-05
C8 -1.035911E-03 1.189224E-04 -9.547401E-07 2.595520E-05
C9 -3.166070E-05 3.835803E-06 -2.877133E-08 7.997941E-07
C10 1.981716E-05 -6.760692E-06 -2.404451E-08 -1.691457E-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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