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Open circuit cooling tower BAC - VTL-E

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The VTL-E range of open circuit cooling towers are forced draft, counter flow and centrifugal fan towers.

Key benefits
  • Low height
  • Easy installation
  • Silent
Typical applications
  • Small and medium industrial and HVAC applications
  • Installations with low height regime
  • Indoor installation
  • High temperature industrial applications
  • Placement in narrow spaces and installations that require only one air intake

Description

General presentation

Reduced height

Very low height: suitable for rooftop placement or tight spaces


Easy installation

VTL-E cooling towers are factory assembled and delivered in one piece for easy lifting and installation.

VTL-E towers can operate at high capacity and minimal operating weight. Can save steel supports, required to be located both under the equipment and in the building when cooling towers are installed on the roof

Air intake on one side allows towers to be installed next to solid walls.

These cooling towers can be placed indoors thanks to centrifugal fans


Ideal for silent operation

VTL-E cooling towers include silent centrifugal fans placed inside to ensure low noise around the unit.

The air intake is carried out on one side, the cooling towers can be located in areas more sensitive to noise.

Noise can be further reduced during operation with noise attenuators designed and tested in the factory


Year-round reliable operation

Various corrosion-resistant materials are available, including Baltibond, patented hybrid coating, to guarantee a long life.

It is optionally available Baltiguard Drive System, for energy saving and silence during the night. It is an ideal stand-by system in the event of an engine failure.

The thermal performance of VTL-E is certified Eurovent.


Easy maintenance

Easy access to all mechanical components, including fan shaft bearings

The individual filler packets BACount allow complete and easy inspection and cleaning, preventing complete replacement of stuffing packs.

Operating principle

Hot process water (1) enters the spray system (2) through the top of the cooling tower where it is distributed over the packing (3). At the same time, the centrifugal fan (4), located at the bottom of the cooling tower, blows ambient air (5) up through the tower. As the hot process water comes into contact with the cold air, the latter heats up and part of the process water evaporates, resulting in optimal heat transfer. Cooled water (6) is collected in the tower basin (7) and sent to the process heat source. The warm saturated air (8) leaves the cooling tower through the droplet separators (9).

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