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Cooling Tower by Types

A cooling tower is a heat rejection device designed to expel unwanted heat from industrial systems into the atmosphere. It works by evaporating water to cool process fluids or air to the desired temperature. Cooling towers are essential for maintaining optimal operating temperatures in various industrial and commercial applications, such as power plants, HVAC systems, chemical plants, and manufacturing processes.

The principle of operation involves passing warm water through the cooling tower, where it exchanges heat with air. The heat is dissipated into the atmosphere, resulting in cooler water being recirculated into the system.

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Why Choose Ascent Machineries for Cooling Towers?

Ascent Machineries & Engineering Services Ltd., based in Goregaon, Mumbai, India, is a trusted name in the manufacturing, supply, and export of high-quality cooling towers. We specialize in delivering robust, efficient, and durable solutions tailored to meet global industrial standards. Our cooling towers are engineered for superior performance, energy efficiency, and long-term reliability.

What Are the Types of Cooling Towers?

  1. FRP Induced Draft Cooling Towers:
    • Made from corrosion-resistant FRP (Fiberglass Reinforced Plastic).
    • Uses a powerful fan to draw air through the system, ensuring efficient cooling.
  2. FRP Counter Flow Towers:
    • Designed for high-efficiency heat transfer.
    • Water flows downward while air moves upward, maximizing cooling performance.
  3. FRP Natural Draft Towers:
    • Operate without fans, using natural airflow for heat dissipation.
    • Ideal for low-energy consumption applications.
  4. FRP and Treated Timber Induced Draft Cooling Towers:
    • Combines durable FRP with treated timber for structural support.
    • Efficient for large-scale industrial applications.
  5. Timber Cross Flow Induced Draft Cooling Towers:
    • Features a crossflow design for improved water distribution.
    • Suitable for medium to high heat load operations.
  6. Timber Natural Draft Cooling Tower:
    • Utilizes natural airflow with timber-based construction.
    • Cost-effective for smaller systems.
  7. Timber Induced Draft Cooling Towers:
    • Built with treated timber for longevity.
    • Incorporates induced draft technology for enhanced cooling efficiency.
  8. Pultruded FRP Induced Draft Cooling Tower:
    • High-strength pultruded FRP ensures excellent corrosion resistance.
    • Optimal for aggressive environments with high heat loads.
  9. Timplast Counter Flow Cooling Towers:
    • Combines timber structure with PVC fills for superior performance.
    • Effective in industries requiring precise temperature control.

Timplast-Counter-Flow-Cooling-Towers-having-Timber-Structure-and-PVC-Fills1
Combines timber structure with PVC fills for superior performance. Effective in industries requiring precise temperature control.
Pultruded-FRP-Induce-Draft-Cooling-Tower
High-strength pultruded FRP ensures excellent corrosion resistance. Optimal for aggressive environments with high heat loads.
Timber-Induced-Draft-Cooling-Towers
Built with treated timber for longevity. Incorporates induced draft technology for enhanced cooling efficiency.
Timber-Natural-Draft-Cooling-Tower
Utilizes natural airflow with timber-based construction. Cost-effective for smaller systems.
Timber-Cross-Flow-Induced-Draft-Cooling-Towers
Features a crossflow design for improved water distribution. Suitable for medium to high heat load operations.
FRP-and-Treated-Timber-Induced-Draft-Cooling-Towers
Combines durable FRP with treated timber for structural support. Efficient for large-scale industrial applications.
FRP-Natural-Draft-Towers1
“Operate without fans, using natural airflow for heat dissipation. Ideal for low-energy consumption applications.”
FRP-Counter-Flow-Towers
“Designed for high-efficiency heat transfer. Water flows downward while air moves upward, maximizing cooling performance.”
FRP-Induced-Draft-Cooling-Towers
“Made from corrosion-resistant FRP (Fiberglass Reinforced Plastic). Uses a powerful fan to draw air through the system, ensuring efficient cooling.”

Technical Specifications

Specification Details
Capacity Range 5 TR to 10,000 TR
Heat Load Capacity Up to 200 MW
Materials FRP, treated timber, PVC fills
Airflow Design Induced draft, counterflow, natural draft
Certifications ISO, CE, ASME
Operating Temperature Up to 80°C
Control Systems PLC/SCADA options for automation
Maintenance Accessibility Easy access panels
Efficiency 85% to 95% depending on type

Pricing and Use Cases

Type of Cooling Tower Initial Cost Operating Cost Maintenance Cost Best Use Case
FRP Induced Draft Cooling Towers Moderate Moderate Low HVAC and chemical industries
FRP Counter Flow Towers High Low Moderate Power plants and large-scale cooling
Timber Natural Draft Towers Low Low Moderate Small-scale applications
Pultruded FRP Induced Draft Towers High Moderate Low Aggressive environments
Timplast Counter Flow Cooling Towers Moderate Moderate Low Food processing and pharmaceuticals

 

Countries and Cities Supplied

We have successfully supplied and exported our Cooling Tower by Types to the following countries and cities:
CountryCities
IndiaMumbai, Delhi, Pune, Chennai, Kolkata
UAEDubai, Abu Dhabi, Sharjah
USANew York, Houston, Los Angeles
UKLondon, Birmingham, Manchester
GermanyBerlin, Frankfurt, Hamburg
AustraliaSydney, Melbourne, Brisbane
South AfricaJohannesburg, Cape Town, Durban
SingaporeSingapore City

Key Clients

Our esteemed clients include:

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Key Questions About Cooling Tower by Types?

Cooling towers work by evaporating water to remove heat from process systems, with the cooled water being recirculated for reuse.

The principle involves heat exchange between warm water and ambient air, with heat dissipated through evaporation.

Industries like HVAC, power generation, chemical processing, and manufacturing heavily rely on cooling towers for efficient thermal management.

  1. Induced Draft Towers
  2. Counter Flow Towers
  3. Natural Draft Towers
  4. Cross Flow Towers

COC (Cycles of Concentration) measures how efficiently water is being reused within the cooling system, impacting operational efficiency and water savings.

CT fan stands for Cooling Tower fan, a critical component in induced draft systems.

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Explore advanced cooling towers by Ascent Machineries, tailored to meet your specific requirements. Contact us today for more information: