
Btu/h 18600 17600 16400 15100 13700 12100 10600
Watts 2100 2220 2400 2620 2890 3200 3550
Amps 9.14 9.68 10.5 11.5 12.6 14.0 15.6
0
Lb/h 318 318 318 317 316 314 310
Btu/h 20700 19600 18200 16800 15200 13600 11900
Watts 2170 2290 2460 2690 2970 3290 3650
Amps 9.52 10.0 10.8 11.8 13.0 14.5 16.1
5
Lb/h 357 357 357 356 354 352 348
Btu/h 23000 21700 20200 18600 16900 15100 13300
Watts 2240 2360 2530 2770 3050 3380 3760
Amps 9.94 10.4 11.2 12.2 13.5 15.0 16.7
10
Lb/h 400 400 399 398 396 394 389
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.603945E+04 3.336474E+03 1.550291E+01 3.539338E+02
C2 6.415225E+02 4.397122E+01 3.063087E-01 6.647624E+00
C3 1.945990E+02 -4.404008E+01 -2.204119E-01 -1.164633E+00
C4 3.246150E+00 -3.027258E-01 -1.687744E-04 8.510503E-02
C5 -3.112185E+00 -6.183037E-01 -4.821798E-03 1.582742E-02
C6 -2.508658E+00 3.981495E-01 2.003896E-03 1.286842E-02
C7 1.142818E-02 2.934338E-04 1.505366E-05 3.716056E-04
C8 -5.360821E-03 3.249211E-03 1.035657E-05 -1.066769E-04
C9 1.840473E-03 3.140975E-03 2.372006E-05 -8.688510E-05
C10 6.010264E-03 -5.175671E-04 -3.044465E-06 -4.836723E-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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