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Double Circuit Evaporator Shell and Tube
Heat Exchanger for Central Air Conditioning
Due to the internal and external fluid temperature is different, so
the heat exchanger shell and tube
bundle temperature is also different. If the temperature difference
between the two, the heat exchanger
will produce a lot of thermal stress, resulting in pipe bending,
fracture, or from the tube board pull.
Therefore, when the tube and the shell temperature difference
exceeds 50 ℃, the need to take
appropriate compensation measures to eliminate or reduce thermal
stress. According to
the compensation measures adopted, shell and tube heat exchanger
can be divided into the following
main types:
① fixed tube plate heat exchanger tube at both ends of the tube
plate and the shell into one, simple
structure, but only for hot and cold fluid temperature difference
is not, and the shell does not need
mechanical cleaning when the heat transfer operation. When the
temperature difference is slightly larger
and the shell pressure is not too high, the elastic compensation
ring can be installed on the housing to
reduce the thermal stress.
(2) The tube sheet at the end of the tube bundle of the floating
head heat exchanger can float freely and
completely eliminate the thermal stress; and the whole tube bundle
can be extracted from the casing for
easy mechanical cleaning and maintenance. Floating head heat
exchanger is widely used, but the
structure is more complex, higher cost.
③ U-tube heat exchanger each tube are bent into U-shaped, both ends
were fixed in the same tube board
upper and lower areas, with the help of the box within the
partition into the import and export of two rooms.
This heat exchanger completely eliminates thermal stress, the
structure is simpler than the floating head,
but the pipe is not easy to clean.
④ eddy current hot film heat exchanger vortex hot film heat
exchanger using the latest vortex heat film
heat transfer technology, by changing the fluid movement state to
increase the heat transfer effect, when
the media through the vortex tube surface, the strong erosion of
the pipe surface, Thermal efficiency. Up
to 10000W / m2 ℃. At the same time this structure to achieve a
corrosion-resistant, high temperature,
high pressure, anti-fouling function. Other types of heat exchanger
fluid channel for the fixed direction of
the flow form, the formation of heat transfer tube surface flow,
convective heat transfer coefficient
decreases.
U SHAPED TUBE DRY EVAPORATOR (DOUBLE CIRCUIT)
CAPACITY: 120KW TO 310KW
Models | QXU120D8 | QXU135D8 | QXU155D8 | QXU185D10 | QXU220D10 | QXU270D10 | QXU310D10 | ||
Rated data ti=12°C te=2°C tu=7°C Dts=5°C | Qn | KW | 120 | 135 | 155 | 185 | 220 | 270 | 310 |
Kcal/h(×103 ) | 103.2 | 116 | 133.3 | 159 | 189 | 232 | 267 | ||
Wn | m3 /h | 20.6 | 23.2 | 26.7 | 31.8 | 37.8 | 46.4 | 53.3 | |
Wm | m3 /h | 25 | 28 | 30 | 41 | 43 | 65 | 68 | |
Dpn | bar | 0.41 | 0.44 | 0.37 | 0.36 | 0.43 | 0.42 | 0.43 |
Models | QXU120D8 | QXU135D8 | QXU155D8 | QXU185D10 | QXU220D10 | QXU270D10 | QXU310D10 | |
Dimension(mm) | A | 1815 | 2115 | 2315 | 2320 | 2320 | 2654 | 2654 |
B | 219 | 219 | 219 | 219 | 273 | 273 | 273 | |
C | 200 | 200 | 200 | 200 | 234 | 234 | 234 | |
D | 1530 | 1830 | 2030 | 2000 | 2000 | 2280 | 2280 | |
E | 240 | 240 | 240 | 300 | 300 | 300 | 300 | |
Vent | S1 | 1/2 | 1/2 | 1/2 | 1/2 | 1/2 | 1/2 | 1/2 |
Outlet | S2 | 1/2 | 1/2 | 1/2 | 1/2 | 1/2 | 1/2 | 1/2 |
Connection | W(DN) | 89 | 89 | 89 | 89 | 114 | 114 | 114 |
D1(mm) | 22 | 22 | 22 | 22 | 35 | 35 | 35 | |
D2(mm) | 42 | 42 | 42 | 42 | 54 | 54 | 54 | |
P(kg) | 145 | 155 | 163 | 232 | 255 | 279 | 296 | |
Qn-rated refrigerating capacity Wn-cooling water flow Wm-maximum cooling water flow Dpn-pressure drop of recirculating cooling water Dts-overheat temperature |
COMPANY IMAGE
COOPERATED CLENTS