Induced Draft Cooling Tower

Induced Draft Cooling Tower

30000.0 INR/Piece

Product Details:

  • Material FRP (Fiber Reinforced Plastic)
  • Refrigerating Capacity 50 TR
  • Air Flow 12000 CFM
  • Application Industrial Process Cooling, HVAC, Power Plants
  • Motor 5 HP TEFC
  • Condition New
  • Type Induced Draft
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Induced Draft Cooling Tower Price And Quantity

  • 1 Piece
  • 30000.0 INR/Piece
  • Flanged
  • Outdoor
  • Easy Access for Maintenance
  • Up to 50°C
  • Less than 0.05% of circulating water
  • UV Stabilized FRP
  • Axial Fan
  • Aluminum Alloy
  • Hot Dip Galvanized Steel
  • Honeycomb PVC Fills

Induced Draft Cooling Tower Product Specifications

  • 80 dB (A)
  • 100 m/hr
  • ABS Plastic
  • FRP (Fiber Reinforced Plastic)
  • Wet Cooling
  • 2700 x 1400 x 2200 mm
  • 3 Phase, 50 Hz
  • 415 V
  • New
  • 50 TR
  • Industrial Process Cooling, HVAC, Power Plants
  • PVC
  • 12000 CFM
  • Induced Draft
  • 3 HP
  • 5 HP TEFC
  • Flanged
  • Outdoor
  • Easy Access for Maintenance
  • Up to 50°C
  • Less than 0.05% of circulating water
  • UV Stabilized FRP
  • Axial Fan
  • Aluminum Alloy
  • Hot Dip Galvanized Steel
  • Honeycomb PVC Fills

Induced Draft Cooling Tower Trade Information

  • 1 Week

Product Description

Adiabatic Cooling Tower GEM Equipments

GEMs Adiabatic Cooling Towers offer an energy-efficient and water-saving cooling solution by combining dry cooling with adiabatic pre-cooling technology. During high ambient temperatures, a fine water spray pre-cools the incoming air, improving cooling efficiency while consuming significantly less water compared to conventional evaporative cooling towers.



Durable Construction for Demanding Environments

Designed with a hot dip galvanized steel frame and UV stabilized FRP body, this cooling tower withstands harsh outdoor conditions and resists corrosion, making it highly suitable for long-term use in industrial and power plant settings. Accessible maintenance ensures consistent operation and reliable performance.


Efficient Cooling Technology and Performance

Axial fans with aluminum alloy blades ensure high airflow (12000 CFM) while honeycomb PVC fills enhance heat exchange efficiency. With a drift loss below 0.05% and a noise level of only 80 dB (A), it meets strict industrial criteria for effective, quiet operation and water conservation.

FAQ's of Induced Draft Cooling Tower:


Q: How does the axial fan design improve the cooling efficiency of this cooling tower?

A: The axial fan, constructed from aluminum alloy, ensures high airflow (12000 CFM) while consuming less power, resulting in efficient air circulation through the honeycomb PVC fills. This optimizes heat exchange and contributes to the tower's overall cooling performance.

Q: What are the benefits of using honeycomb PVC fills as heat exchange media?

A: Honeycomb PVC fills enhance surface area for effective heat transfer, encouraging rapid cooling of water. Their structure minimizes water loss through drift and helps maintain the tower's drift loss below 0.05% of circulating water, promoting water efficiency and sustainability.

Q: When is maintenance required, and how easy is it to service this cooling tower?

A: Routine maintenance is recommended based on workload and water quality, typically once every three to six months. The design offers easy access to internal components, simplifying inspection and servicing, and reduces downtime for busy industrial facilities.

Q: Where can this cooling tower be installed?

A: This cooling tower is designed for outdoor installation and is suitable for diverse environments such as industrial process cooling sites, HVAC systems, and power plants. Its corrosion-resistant materials and robust construction make it reliable under various climate conditions.

Q: What process does the induced draft cooling tower use to reduce water temperature?

A: Water is distributed over honeycomb PVC fills, increasing its surface area, while the axial fan draws air from the bottom upward. This induced draft process maximizes contact between water and air, effectively reducing water temperature through evaporation and heat exchange.

Q: How does the FRP construction benefit the longevity and maintenance of the cooling tower?

A: UV stabilized FRP (Fiber Reinforced Plastic) ensures excellent corrosion resistance and longevity, reducing maintenance needs and protecting against environmental wear. It retains structural integrity even under prolonged outdoor exposure.

Q: What major industries can benefit from this cooling tower, and why?

A: Industries such as manufacturing, chemical processing, power generation, and HVAC benefit from this cooling tower due to its efficient wet cooling technology, robust construction, low drift loss, and adaptability to high water flow rates and refrigeration capacity (50 TR).

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