TBC Forced Draft Counterflow Closed Cooling Tower

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TBC Forced Draft Counterflow Closed Cooling Tower

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Closed Cooling Tower

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  • Product Description

    The forced draft counterflow closed cooling tower is a type of cooling tower that combines the characteristics of forced draft, counterflow, and closed systems.
    It has advantages such as high efficiency, energy saving, and environmental protection, and is widely used in various industrial fields that require cooling.


    ▍ Structure and Working Principle
    Structure: The forced draft counterflow closed cooling tower mainly consists of the cooling tower body, fan, heat exchanger, spray system, and circulating water pump. Among them, the cooling tower body is the core part, equipped with a heat exchanger for heat exchange between circulating water and outside air; the fan is located at the bottom of the cooling tower, responsible for blowing air into the cooling tower; the spray system is used to evenly spray cooling water on the heat exchanger to enhance the heat exchange effect.


    ▍ Operating Principle
    Circulating water enters the interior of the cooling tower through the heat exchanger and undergoes counterflow heat exchange with the air blown in by the fan. At the same time, the spray system sprays cooling water on the surface of the heat exchanger to further promote heat exchange. The cooled circulating water is sent back to the heat source by the circulating water pump for further cooling, forming a closed-loop system.


    ▍ Applications and Advantages
    The forced draft counterflow closed cooling tower is widely used in central air conditioning cooling systems, injection molding machine cooling systems, air compressor cooling systems, medium frequency furnace cooling systems, electric furnace cooling systems, and other fields.
    Due to its closed design, it avoids water quality pollution; at the same time, the combination of counterflow and forced draft improves heat exchange efficiency; in addition, this cooling tower also has advantages such as compact structure, small footprint, stable operation, and high degree of automation.

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