Overview:
Fin tube heating systems are commonly used in poultry houses to provide efficient and uniform heat distribution. The systems consist of tubes with aluminum or copper fins attached along the length of the tube.
**Purpose**:
Fin tube systems are designed to provide radiant heat, which is essential for maintaining proper temperatures in poultry houses, especially during colder months. These systems help create a comfortable and conducive environment for the birds, promoting their growth and overall well-being.
**Structure**:
Fin tubes typically consist of a base tube, which is usually made of copper or aluminum, with a series of extended aluminum or copper fins attached along its length. The fins increase the surface area of the tube, which in turn enhances the heat transfer efficiency.
**Heat Transfer**:
The design of fin tubes allows for efficient heat transfer from the hot water or steam circulating within the tubes to the surrounding air. The increased surface area provided by the fins facilitates better heat dissipation, ensuring even distribution throughout the poultry house.
**Heating Source**:
The fin tube system is usually connected to a central heating source, such as a boiler, which heats the water or generates steam to be circulated through the tubes. This centralized heating system ensures consistent and controlled heat distribution.
**Customization**:
Fin tubes can be customized to fit the specific requirements of poultry houses, allowing for variations in length, diameter, and fin density to match the heating needs of different areas within the facility.
**Installation and Maintenance**:
Proper installation and regular maintenance of fin tube systems are crucial to ensure their effectiveness and longevity. It's important to have qualified professionals install and periodically inspect the system for any potential issues.
**Benefits**:
- Efficient heat distribution
- Cost-effective operation
- Customizable to suit specific heating demands
- Durable and long-lasting
Overall, fin tube systems play a vital role in maintaining optimal temperatures in poultry houses, contributing to the health and productivity of the birds. Always consult with HVAC professionals to ensure that the chosen fin tube system is suitable for your specific poultry house requirements.
Description:
Standard | ASTM A312; ASTM A213 or other standard based on the material |
Base Tube Material | Stainless Steel/Nickel Alloy/Alloy Steel... |
Fin Material | Aluminum/Stainless Steel... |
Base Tube O.D. | 16-219mm or customed |
Fin Height | 6-50mm or customed |
Fin Thickness | 0.3-3.0mm or customed |
Fin Pitch | As customer's request |
Tube End | Plain Ends, Beveled Ends |
Bare End | As customer's request |
Weld Process | GMAW |
Production Capacity | More than 5000 meters per day |
Chemical Composition for Base Tube:
Grade | C | Mn | P | S | Si | Cr | Ni | Mo |
TP304 | 0.08 max | 2.00 max | 0.045 max | 0.03 max | 1.00 min | 18.0-20.0 | 8.0-11.0 | - |
TP304L | 0.035 max | 2.00 max | 0.045 max | 0.03 max | 1.00 min | 18.0-20.0 | 8.0-13.0 | - |
TP316 | 0.08 max | 2.00 max | 0.045 max | 0.03 max | 1.00 min | 16.0-18.0 | 10.0-14.0 | 2.00-3.00 |
TP316L | 0.035 max | 2.00 max | 0.045 max | 0.03 max | 1.00 min | 16.0-18.0 | 10.0-14.0 | 2.00-3.00 |
... |
Mechanical Properties:
Grade | Tensile Strength, min, ksi (MPa) | Yield Strength, min, ksi (MPa) | Elongation in 2 in. or 50mm, min (%) | Heat Treatment Temperature, min, °F(°C) | |
Longitudinal | Transverse | ||||
TP304 | 75(515) | 30(205) | 35 | 25 | 1900(1040) |
TP304L | 70(485) | 25(170) | 35 | 25 | 1900(1040) |
TP316 | 75(515) | 30(205) | 35 | 25 | 1900(1040) |
TP316L | 70(485) | 25(170) | 35 | 25 | 1900(1040) |
... |