Countercurrent evaporative condenser
Countercurrent evaporative condenser
Countercurrent evaporative condenser
Countercurrent evaporative condenser
Countercurrent evaporative condenser
Countercurrent evaporative condenser
Countercurrent evaporative condenser
Countercurrent evaporative condenser
Countercurrent evaporative condenser
Countercurrent evaporative condenser

Countercurrent evaporative condenser

Reliable Performance: Innovative combination of secondary heat exchange design.

Long-Term, High-Efficiency Evaporative Condensing: Fans are mounted above the spray water zone in the hot airflow.

Scale-Resistant: Reduced maintenance frequency, maintaining optimal heat transfer performance.

Easy Maintenance and Inspection:Directly accessible water spray system/Spacious, clog-free air intake louvers/Sloped basin for easy cleaning

Low Investment:Efficient operation with low running costs.

Operating Principle

How Evaporative Condensers Work: High-temperature refrigerant vapor enters the unit's coil system. Recirculating water is sprayed uniformly over the coils' exterior. The water evaporates upon contact, absorbing heat from the refrigerant. Simultaneously, an axial fan draws ambient air across the wetted coils, facilitating evaporation and removing the heat-laden, moisture-saturated air. This process condenses the refrigerant inside the coils from a vapor to a liquid. (See diagram below)

countercurrent-11

Structure

The evaporative condenser is primarily composed of two main sections: the upper section and the lower section. The upper section consists of the coil section, spray system, axial fan(s), and upper casing. The lower section includes the water pump, water basin, base frame, and lower casing.

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