0 35,000 0.575 0.42 1.
42 22,644 12,356
1 35,000 0.549 0.45 1.45 21,596 13,404
2 35,000 0.525 0.48 1.48 20,662 14,338
3 35,000 0.502 0.50 1.50 19,743 15,257
4 35,000 0.487 0.51 1.51 19,167 15,833
5 35,000 0.483 0.52 1.52 19,009 15,991
6 35,000 0.530 0.47 1.47 20,859 14,141
7 35,000 0.610 0.39 1.39 24,008 10,992
8 35,000 0.720 0.28 1.28 28,337 6,663
9 35,000 0.790 0.21 1.21 31,092 3,908
10 35,000 0.822 0.18 1.18 32,351 2,649
11 35,000 0.885 0.12 1.12 34,831
12 35,000 0.920 0.08 1.08 36,208
13 35,000 0.950 0.05 1.05 37,389
14 35,000 0.980 0.02 1.02 38,570
15 35,000 1.000 0.00 1.00 39,357 4,357
16 35,000 0.970 0.03 1.03 38,176
17 35,000 0.930 0.07 1.07 36,602
18 35,000 0.870 0.13 1.13 34,241
19 35,000 0.810 0.19 1.19 31,879
20 35,000 0.735 0.27 1.27 28,927
21 35,000 0.690 0.31 1.31 27,156
22 35,000 0.640 0.36 1.36 25,188 9,812
35,000 0.610 0.39 1.39 24,008 10,992
692,002 146,335
Total chillers 7#
cap. Of each chiller 5000 tons
Total Tonnage 35000 tons 840000 (147,998)
Total Tons Hours 692,002
Thermal Storage Tank 146,335 Tons hours If we add this capacity, plant can meet peak load of
Data
Water temp to system 5 'c
Water temp from system 14.4 'c
Temp. diff 9.4 'c
Tonnage hour 146,335 Tr Hr
TES storage cap. TRHR*3024/1000/temp.diff/efficiency
Volume 49,554 m3
Take tank height 15m
3.14/4 d2 height
0.785 d2 15 49,554
49,554
11.775 4208
28 diameter
TES TANK SIZE 28m DIA x 15m Height
3.14/4*d2*2m/s*3600s/hr = vol (m3/hr)
Vel = 2 m/s 2* 3600 m/hr
Volume = 1402 m3/hr
3.14/4 * d2 * 2 * 3600 '=1402 m3/hr
d2 = 0.25 m
d= .498 * 40
d= 20'' Inlet Connection
trhr 1402 m3/hr
t peak load of 39,357 Tr Hr
(Efficicecy = .95)