A V-Type Air Cooler is an advanced, space-saving industrial heat exchanger featuring tube bundles arranged in a "V" shape configuration. Fans are typically mounted at the top or bottom of the V-frame, creating a highly efficient, compact cross-flow cooling system that maximizes heat transfer within a minimal physical area.
- Air Cooled Heat Exchanger
- Air coller
Forced Draft Air Cooled Heat Exchanger
A Forced Draft Air Cooler is an efficient industrial heat exchanger that uses ambient air to cool process fluids. In this configuration, the fans are located below the tube bundle, forcing fresh air upward through the finned tubes to absorb heat.
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Product Description
Key Advantages
High Reliability: Fans and motors operate in the cool ambient air stream, protecting them from high exhaust temperatures and extending equipment lifespan.
Easy Maintenance: With the drive assembly located at a lower level, routine inspection and servicing are much safer and more accessible.
Structural Stability: A lower center of gravity provides excellent resistance to wind loads and operational vibrations.
Major Applications
This robust design is widely used across heavy industries requiring large-scale heat rejection, including:
Oil & Gas / Petrochemical: For condensing overhead vapors and cooling hydrocarbons.
Power Generation: For cooling turbine exhaust steam and generator jacket water.
Chemical Processing: For cooling process acids and synthesis loops.
Working Principle
The working principle of a Forced Draft Air Cooler is based on forced convection and indirect heat transfer:
Fluid Entry: Hot process fluid (gas or liquid) enters the headers and flows through the inside of the finned tubes.
Forced Airflow: Axial fans mounted below the tube bundle push (force) ambient cool air upward through the tube bundle.
Heat Exchange: As the cool air passes around the external fins, it absorbs heat from the tube walls. The fins vastly increase the surface area to maximize heat transfer efficiency.
Discharge: The process fluid cools down (or condenses) and exits the tubes, while the heated air is discharged from the top into the atmosphere.
Customer reviews
Superior Durability、Superior Durability、Safe Serviceability、High Structural Stability、Optimized Thermal Efficiency
Product Parameters
| 1.6MPa Series Forced Draft Horizontal Carbon Steel Tube Bundle Specifications & Parameters | |||||||||||
| Tube Bundle Model | Number of Tubes | Number of Tube Rows | Base Tube Heat Transfer Area (m²) | Overall Dimensions | quality kg | ||||||
| Water filling | Metal | ||||||||||
| A (mm) | B (mm) | C (mm) | D (mm) | E (mm) | Water Filled Mass (kg) - L/DR Type Fins | Metal Mass (kg) - L Type Fins | Metal Mass (kg) - DR Type Fins | ||||
| GP12×3-4-172-1.6S-23.4/【 】-Ⅰa | 182 | 4 | 172 | 12092 | 2985 | 1500 | 740 | 430 | 810 | 7388 | 8342 |
| GP12×3-4-172-1.6S-23.4/【 】-Ⅱa | 807 | 7416 | 8100 | ||||||||
| GP12×3-4-172-1.6S-23.4/【 】-Ⅳa | 800 | 7469 | 8423 | ||||||||
| GP12×3-6-258-1.6S-23.4/【 】-Ⅰa | 273 | 6 | 258 | 850 | 540 | 1218 | 10451 | 11882 | |||
| GP12×3-6-258-1.6S-23.4/【 】-Ⅱa | 1218 | 10451 | 11882 | ||||||||
| GP12×3-6-258-1.6S-23.4/【 】-Ⅲa | 1212 | 10507 | 11938 | ||||||||
| GP12×3-8-344-1.6S-23.4/【 】-Ⅰa | 364 | 8 | 344 | 12092 | 2985 | 1500 | 960 | 665 | 1625 | 13540 | 15447 |
| GP12×3-8-344-1.6S-23.4/【 】-Ⅱa | 1622 | 13542 | 15449 | ||||||||
| GP12×3-8-344-1.6S-23.4/【 】-Ⅳa | 1615 | 13569 | 15476 | ||||||||
| GP10.5×3-4-150-1.6S-23.4/【 】-Ⅰa | 182 | 4 | 150 | 10592 | 2985 | 1500 | 740 | 430 | 725 | 6598 | 7430 |
| GP10.5×3-4-150-1.6S-23.4/【 】-Ⅱa | 721 | 6626 | 7458 | ||||||||
| GP10.5×3-4-150-1.6S-23.4/【 】-Ⅳa | 714 | 6679 | 7511 | ||||||||
| GP10.5×3-6-226-1.6S-23.4/【 】-Ⅰa | 273 | 6 | 226 | 850 | 540 | 1082 | 9324 | 10572 | |||
| GP10.5×3-6-226-1.6S-23.4/【 】-Ⅱa | 1082 | 9324 | 10572 | ||||||||
| GP10.5×3-6-226-1.6S-23.4/【 】-Ⅲa | 1076 | 9380 | 10628 | ||||||||
| GP10.5×3-8-301-1.6S-23.4/【 】-Ⅰa | 364 | 8 | 301 | 960 | 665 | 1454 | 12068 | 12729 | |||
| GP10.5×3-8-301-1.6S-23.4/【 】-Ⅱa | 1451 | 12066 | 12731 | ||||||||
| GP10.5×3-8-301-1.6S-23.4/【 】-Ⅳa | 1444 | 12095 | 13722 | ||||||||
| GP9×3-4-129-1.6S-23.4/【 】-Ⅰa | 182 | 4 | 129 | 9092 | 2985 | 150 | 740 | 430 | 639 | 5781 | 6507 |
| GP9×3-4-129-1.6S-23.4/【 】-Ⅱa | 636 | 5809 | 6535 | ||||||||
| GP9×3-4-129-1.6S-23.4/【 】-Ⅳa | 629 | 5862 | 6588 | ||||||||
| GP9×3-6-193-1.6S-23.4/【 】-Ⅰa | 273 | 6 | 193 | 850 | 540 | 963 | 8181 | 9270 | |||
| GP9×3-6-193-1.6S-23.4/【 】-Ⅱa | 963 | 8181 | 9270 | ||||||||
| GP9×3-6-193-1.6S-23.4/【 】-Ⅲa | 956 | 8237 | 9326 | ||||||||
| GP9×3-8-258-1.6S-23.4/【 】-Ⅰa | 364 | 8 | 258 | 960 | 665 | 1282 | 10549 | 12001 | |||
| GP9×3-8-258-1.6S-23.4/【 】-Ⅱa | 1278 | 10551 | 12003 | ||||||||
| GP9×3-8-258-1.6S-23.4/【 】-Ⅳa | 1271 | 10578 | 12030 | ||||||||
| GP6×3-4-85-1.6S-23.4/【 】-Ⅰa | 182 | 4 | 85 | 6092 | 2985 | 1500 | 740 | 430 | 467 | 4208 | 4725 |
| GP6×3-4-85-1.6S-23.4/【 】-Ⅱa | 464 | 4236 | 4753 | ||||||||
| GP6×3-4-85-1.6S-23.4/【 】-Ⅳa | 457 | 4289 | 4806 | ||||||||
| 1.6MPa Series Forced Draft Horizontal Carbon Steel Tube Bundle Specifications & Parameters | |||||||||||
| Tube Bundle Model | Number of Tubes | Number of Tube Rows | Base Tube Heat Transfer Area (m²) | Overall Dimensions | quality kg | ||||||
| Water filling | Metal | ||||||||||
| A (mm) | B (mm) | C (mm) | D (mm) | E (mm) | Water Filled Mass (kg) - L/DR Type Fins | Metal Mass (kg) - L Type Fins | Metal Mass (kg) - DR Type Fins | ||||
| GP6×3-6-128-1.6S-23.4/【 】-Ⅰa | 273 | 6 | 128 | 6092 | 2985 | 1500 | 850 | 540 | 701 | 5922 | 6697 |
| GP6×3-6-128-1.6S-23.4/【 】-Ⅱa | 701 | 5922 | 6697 | ||||||||
| GP6×3-6-128-1.6S-23.4/【 】-Ⅲa | 694 | 5978 | 6753 | ||||||||
| GP6×3-8-171-1.6S-23.4/【 】-Ⅰa | 364 | 8 | 171 | 960 | 665 | 939 | 7605 | 8639 | |||
| GP6×3-8-171-1.6S-23.4/【 】-Ⅱa | 936 | 7607 | 8641 | ||||||||
| GP6×3-8-171-1.6S-23.4/【 】-Ⅳa | 929 | 7634 | 8668 | ||||||||
| GP3×3-4-42-1.6S-23.4/【 】-Ⅰa | 182 | 4 | 42 | 740 | 430 | 296 | 2632 | 2865 | |||
| GP3×3-4-42-1.6S-23.4/【 】-Ⅱa | 292 | 2660 | 2893 | ||||||||
| GP3×3-4-42-1.6S-23.4/【 】-Ⅳa | 285 | 2713 | 2946 | ||||||||
| GP3×3-6-63-1.6S-23.4/【 】-Ⅰa | 273 | 6 | 63 | 3092 | 2985 | 1500 | 850 | 540 | 437 | 3673 | 4022 |
| GP3×3-6-63-1.6S-23.4/【 】-Ⅱa | 437 | 3673 | 4022 | ||||||||
| GP3×3-6-63-1.6S-23.4/【 】-Ⅲa | 431 | 3729 | 4078 | ||||||||
| GP3×3-8-84-1.6S-23.4/【 】-Ⅰa | 364 | 8 | 84 | 960 | 665 | 597 | 4660 | 5126 | |||
| GP3×3-8-84-1.6S-23.4/【 】-Ⅱa | 593 | 4662 | 5128 | ||||||||
| GP3×3-8-84-1.6S-23.4/【 】-Ⅳa | 586 | 4689 | 5155 | ||||||||
| Horizontal Frame Specifications & Parameters | ||||||||
| Serial No. | Frame Model | Size mm | Matching fan | quality | ||||
| Model | quantity | kg | ||||||
| A (mm) | B (mm) | D (mm) | n | Matching Fan Model | Fan Quantity | Mass (kg) | ||
| 1 | GJP12×3 K/B -24/3F | 11500 | 3000 | 2500 | 36 | G-24 | 3 | 4650 6680 |
| 2 | GJP12×6 K/B -42/2F | 11500 | 6000 | 4306 | 60 | G-42 | 2 | 6160 8180 |
| 3 | GJP10.5×3 K/B -24/3F | 10000 | 3000 | 2500 | 36 | G-24 | 3 | 4360 6280 |
| 4 | GJP10.5×6 K/B -39/2F | 10000 | 6000 | 4010 | 60 | G-39 | 2 | 5720 7640 |
| 5 | GJP9×3 K/B -24/3F | 8700 | 3000 | 2500 | 36 | G-24 | 3 | 3720 5480 |
| 6 | GJP9×6 K/B -36/2F | 8700 | 6000 | 3706 | 60 | G-36 | 2 | 5130 6840 |
| 7 | GJP6×3 K/B -24/2F | 5700 | 3000 | 2500 | 36 | G-24 | 2 | 2800 4030 |
| 8 | GJP6×6 K/B -45/1F | 5700 | 6000 | 4620 | 72 | G-45 | 1 | 3640 4890 |
| 9 | GJP3×3 K/B -24/1F | 2700 | 3000 | 2500 | 36 | G-24 | 1 | 1780 2610 |
| Model NO. | Casen | Type | Air cooler |
| Material | Galvanized or Stainless Steel | Application Field | Refrigeration |
| Certification | ISO, CE, SGS | Condition | New |
| Casing | Galvanized or Stainless Steel | Specification | 100 ton |
| Transport Package | Container | Origin | China |
| HS Code | 84198990 | Production Capacity | 200 Sets/Month |
| Products1 | Air Condition | Products2 | Air Conditioners |
| Package Size | 600* 300* 600cm | Package Gross Weight | 8000kg |
FAQ
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Q1: What is a Forced Draft Air Cooler?
A: It is an industrial heat exchanger where fans are installed below the tube bundle to push cool ambient air upward to cool the process fluid.
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Q2: What are its main advantages?
A: High mechanical reliability and easy, safe maintenance, because the fans and motors are at a lower level and kept away from hot exhaust air.
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Q3: Which design standards do you follow?
A: We strictly comply with global industrial standards, primarily API 661 and ASME Section VIII.
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Q4: What info is needed for a quick quote?
A: We just need your process Data Sheet (fluid type, flow rate, inlet/outlet temperatures, design pressure, and local ambient temperature).
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Q5: How do you protect it from freezing in winter?
A: We can equip the unit with adjustable louvers, air recirculation systems, or steam coils to control airflow and prevent freezing.
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