FRP & Cast Aluminium Cooling Tower Fan Blades

What is the purpose of ACT cooling tower fans?

Cooling tower fans is used to facilitate the heat exchange process within the cooling tower. It is designed to force or push massive quantities of air across the cooling tower to withstand the corrosive effects of the environment in which they operate.

Fan Types:

  • Crossflow
  • Counterflow
  • Induced Draft
  • Forced Draft

Accent Cooling Towers Fan Blades

  • Aluminium
  • FRP (Fiber Reinforced Plastic).

The raw material i.e. FRP and provides the desired non corrosive quality to the fan blades, resulting in the operation of fans even in the chemical environment. FRP is lightweight material which ensures low moment of inertia, minimum wear & tear of motor, bearing and drive system. The basic purpose of fan is to move a mass of gas or vapor at the desired velocity. For achieving this objective, there is slight increase in the gas pressure across the fan impeller. Accent manufacture fans with fan blade choice of correct twist and of special air foil sections to reduce compressibility losses.

Industrial cooling towers play a crucial role across various industries to optimize their efficiency can to reduce costs and improve overall efficiency. Mechanically forced draft or induced draft cooling towers are widely used in industrial applications to remove heat from circulating cooling water systems. Accent Cooling Tower Fans are a less expensive and more convenient approach to reduce auxiliary power use at a plant. In fact, they have been responsible for saving 250 MW of energy.

Why Accent Cooling Towers Fans?

  • Energy Savings
  • Cost-Effective Solution
  • Global Use and Proven Reliability
  • Improved Environmental Impact
  • Size up to 33’ diameter
  • MOC offered FRP and Aluminium

Accent Cooling Towers is leading FRP and Aluminium fan blades manufacturers, suppliers & exporters in India as well as internationally. We offer high performance, energy efficient cooling tower fans that improve airflow and pressure while operating at lower speeds.

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