H-Moon Drift Eliminator
Technicial Specifications
H-MOON | |
Drift Eliminator Material |
PVC/PP |
Spacer Material | PVC/PP |
Fittings | PP Ara Mesafe |
Min./Max. Operation Temperature | -20°C / 80 °C |
Profile Height (mm) | 180 |
Water Loss | % 0.002 |
The H-Moon drift eliminator is a specific type of drift eliminator used in water cooling towers. Drift eliminators are essential components in cooling towers designed to capture and prevent water droplets from being carried out of the tower with the exiting air. The H-Moon drift eliminator, in particular, has a unique design that enhances its efficiency in minimizing water loss.
Here's the role of the H-Moon drift eliminator in water cooling towers:
- Water Droplet Capture: The primary function of the H-Moon drift eliminator is to capture tiny water droplets suspended in the warm, moist air leaving the cooling tower. These droplets can contain valuable water that needs to be conserved and recirculated within the cooling system.
- Efficient Design: The H-Moon drift eliminator is designed with a series of closely spaced, overlapping blades arranged in a honeycomb or chevron pattern. This design maximizes the surface area for droplet capture while minimizing airflow resistance, ensuring efficient operation.
- Preventing Water Loss: By capturing water droplets, the H-Moon drift eliminator prevents water loss from the cooling tower. This conservation of water is crucial for both economic and environmental reasons, as it reduces the need for additional makeup water and conserves precious resources.
- Compliance with Regulations: Many environmental regulations and local ordinances require cooling towers to minimize water drift to reduce the environmental impact and conserve water resources. The H-Moon drift eliminator aids in complying with these regulations, ensuring that the cooling tower operates within the specified limits.
- Improving Efficiency: By preventing water loss, the H-Moon drift eliminator helps maintain the optimal water-to-air ratio within the cooling tower. This balance is essential for efficient heat exchange and cooling performance, ensuring the cooling tower operates at its best efficiency.
- Minimizing Water Treatment Costs: Conserving water through effective drift elimination also reduces the need for additional water treatment chemicals. By capturing and recycling more water within the cooling system, the demand for water treatment chemicals is minimized, resulting in cost savings.