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4000kw water cooled condenser large condensing unit SS304 shell
Marine Condenser
Shell and Tube Condenser (Single Circuit)
(Capacity): 3TR TO 426TR
Ton of refrigeration (TR) |
Model | Refrigeration ton (104kcal/h) | Dimension (mm) |
Max. water flow | |
Shell diameter | Tube length | ||||
3 | QXC3S4 | 1.134 | 114 | 635 | 2.5 |
15 | QXC15S6 | 5.670 | 168 | 1270 | 11.6 |
35 | QXC35S8 | 13.23 | 219 | 1600 | 27.3 |
50 | QXC50S10 | 18.90 | 273 | 2032 | 38.5 |
100 | QXC100S12A | 37.80 | 325 | 2500 | 240 |
150 | QXC150S14A | 56.70 | 355 | 2500 | 290 |
200 | QXC200S16A | 75.60 | 426 | 2500 | 310 |
426 | QXC426S22A | 115.62 | 530 | 3800 | 290 |
Shell and Tube Condenser (Double Circuit)
(Capacity): 10TR TO 426TR
Ton of refrigeration (TR) |
Model | Refrigeration ton (104kcal/h) | Dimension (mm) |
Max. water flow | |
Shell diameter | Tube length | ||||
10 (5+5) | QXC10D6 | 3.78 | 168 | 483*2 | 7.8 |
30 (15+15) | QXC30D8 | 11.34 | 219 | 819*2 | 23 |
80 (40+40) | QXC80D12A | 30.24 | 325 | 953*2 | 61 |
120 (60+60) | QXC120D12A | 45.36 | 325 | 1270*2 | 91 |
200 (100+100) | QXC200D16A | 75.60 | 426 | 1600*2 | 150.8 |
280 (140+140) | QXC280D20A | 88.24 | 480 | 1600*2 | 211 |
380 (190+190) | QXC380D22A | 106.53 | 530 | 1750*2 | 285.5 |
426 (213+213) | QXC426D22A | 115.62 | 530 | 1900*2 | 320 |
Seawater Anticorrosive Heat Exchanger (Single Circuit)
(Capacity) 5TR TO 120TR
Ton of refrigeration (TR) |
Model | Dimension (mm) | ||
Shell diameter | Tube length | Total length | ||
5 | QXMC5S5 | 140 | 635 | 721 |
10 | QXMC10S6 | 168 | 950 | 1046 |
15 | QXMC15S6 | 168 | 1270 | 1366 |
30 | QXMC30S8 | 219 | 1600 | 1710 |
50 | QXMC50S10 | 273 | 2032 | 2485 |
80 | QXMC80S12 | 325 | 2032 | 2485 |
120 | QXMC120S14 | 355 | 2500 | 2966 |
For the other capacity parameters, please contact with the technical department for more. |
(1) Refrigerant has multiple processes. If it is not properly handled at the corner of the end cover, liquid will accumulate, which will cause uneven distribution of liquid into the next process and affect the heat transfer effect.
(2) There is a leakage problem at the water side. Generally, there is a gap of 1 ~ 3mm between the outer edge of the baffle plate and the shell, and a gap of about 2mm between the baffle plate and the heat transfer pipe, which will cause water leakage.It has been proved in practice that water leakage can reduce the heat transfer coefficient of water side by 20% ~ 30% and the total heat transfer coefficient by 5% ~ 15%.
COOPERATED CLENTS