|
Specifications of condenser and evaporator coils |
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|
NO |
Tube Diameter(mm) |
Distance of hole/row(mm) |
Fin Style |
Fin Space(mm) |
|
1 |
Φ7 |
21*12.7 |
Louvered fin,Plain fin,Sine wave fin |
1.4~2.0 |
|
2 |
Φ7 |
21*18.9 |
Sine wave fin,Corrugated fin |
1.3~1.9 |
|
3 |
Φ7 |
25*21.65 |
Louvered fin |
1.5~3.8 |
|
4 |
Φ9.52 |
25.4*22 |
Louvered fin,Sine wave fin |
1.6~6.35 |
|
5 |
Φ9.52 |
25.4*22 |
Louverd fin,Plain fin,Sine wave fin |
1.6~3.2 |
|
6 |
Φ9.52 |
25*19 |
Louverd fin,Plain fin,Sine wave fin |
1.4~3.2 |
|
7 |
Φ9.52 |
25*21.65 |
Louvered fin,V ripple fin |
2.0~3.8 |
|
8 |
Φ9.52 |
25*25 |
Plain fin |
1.6~3.2 |
|
9 |
Φ9.52 |
25*21.65 |
Plain fin |
2.0~6.0 |
|
10 |
Φ9.52 |
25.4*22 |
Louvered fin,Plain fin,Sine wave fin |
1.6~6.35 |
|
11 |
Φ9.52 |
31.75*27.5 |
Louvered fin,Plain fin,Sine wave fin |
1.6~6.35 |
|
12 |
Φ12.7 |
31.75*27.5 |
Plain fin,Sine wave fin,V ripple fin |
1.8~6.0 |
|
13 |
Φ12.7 |
31.75*27.5 |
Louvered fin,Plain fin,Sine wave fin,V ripple fin |
1.7~2.2 |
|
14 |
Φ12.7 |
31.75*27.5 |
corrugated fin |
1.6~2.9 |
|
15 |
Φ15.88 |
38.1*33 |
Plain fin,Sine wave fin,V ripple fin |
2~4 |
|
1.5~4.1 |
1.5~4.2 |
1.5~4.3 |
1.5~4.4 |
1.5~4.5 |
We can serve for more types of evaporator according to every customers' drawing and requirement
|
|
Series 1 |
Series 2 |
Series 3 |
Series 4 |
|
Tube Diameter |
Φ 9.52 |
Φ9.52 |
Φ7 |
Φ 7.94 |
|
Hole Space(mm) |
25 |
25.4 |
20.5 |
22 |
|
Row Space(mm) |
21.65 |
22 |
12.7 |
19.05 |
|
Tube Material |
Copper, Aluminum |
Copper, Aluminum |
Copper, Aluminum |
Copper, Aluminum |
|
Type of Tube |
Smooth Tube |
Smooth Tube |
Smooth Tube |
Smooth Tube |
|
Fin Surface |
Louver Fin |
Flat Fin |
Flat Fin |
Louver Fin |
|
Fin Type |
Hydrophilic Foil |
Hydrophilic Foil |
Hydrophilic Foil |
Hydrophilic Foil |
|
Fin Thickness(mm) |
0.095~0.2 |
0.095~0.2 |
0.095~0.2 |
0.095~0.2 |
|
Fin Space(mm) |
1.4~2.3 mm |
1.4~2.3 mm |
1.1~1.8mm |
1.4~2.0 mm |

Copper tube air cooled heat exchangers seem pretty common everywhere. They handle heat rejection to the air in a lot of ways and work efficiently most of the time. This is the fin and tube kind we have been talking about. I want to get into how they are designed and some applications plus the engineering parts that make them tricky.
Basically a copper tube air cooled heat exchanger lets fluid like water or oil or refrigerant move through copper tubes. Then air from outside gets pushed or pulled over the tubes that have fins on them to take away the heat. The copper part conducts heat well and the aluminum fins make the surface area way bigger for the air to touch.
The main equation here is Q equals U times A times delta T sub lm. Q is the heat transfer rate. U stands for the overall heat transfer coefficient and it gets better with the tube and fin setup. A is the total surface area which the fins really boost up. Delta T sub lm is the log mean temperature difference between the fluid inside and the air outside. That equation kind of ties it all together I suppose.
Choose us, make better Copper Tube Air Cooled Heat Exchanger.




Our Advantages
- We have customized products for many customers, following are some projects we did before.
- We can provide designing data and production drawings.
- We promise we use the design software sold by a well-known European HAVC software company. Through 8 years of cooperation with them, we have designed, processed and exported dry coolers to various countries all around the world.
- All of customers feedback is that the actual cooling performance is almost the same as the theoretical design value.
Packaging & Shipping
The normal package is wooden box. If export to european countries, the wooden box will be fumigated. If container is too tighter, we will use pe film for packing or pack it according to customers special request.
lead Time
20 - 40 days
Payment Terms
50% T/T payment in advance, 50% T/T payment before delivery
Packing Condition
Standard export packing or customized packaging
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