COOLING TOWERS
   
 

TXV Range
20 models from 10 to 128 l/s
Principle of operation
Water from the heat source enters a single inlet connection located on the louver face of the unit and is distributed over the wet deck surface through gravity flow diffuser nozzles. Simultaneously, air is induced through air inlet louvers across the wet deck surface and causing a small portion of the water to evaporate. This evaporation removes heat from the remaining water. The cooled water flows into the tower sump where it is returned to the heat source.

Characteristics

  • crossflow design
  • induced draught configuration
  • single side horizontal air entry
  • vertical air discharge
  • aluminium or steel axial fans
  • gravity water distribution
  • BACross film fill with 19 mm spacing
  • V-belt drive

Main features

  • low fan power
  • spacious interior for ease of maintenance
  • low sound levels
  • back to back arrangements possible
  • factory built sections for minimum site assembly
  • suitable for outdoor locations

Material options
Baltiplus corrosion protection

BALTIPLUS Corrosion Protection comprises all steel components fabricated from Z 600 galvanised steel with 600 g of zinc per mē coating. Cut edges are protected with a zinc rich paint. All fasteners have a 3-stage protective coating consisting of a zinc phosphate treatment, a zinc rich inorganic resin coating and an aluminium rich organic topcoat. The exterior surfaces of the equipment are finished with a coat of polymeric zinc aluminium paint.

Baltibond Corrosion Protection System
The BALTIBOND Corrosion Protection System is applied to individual galvanized steel components prior to assembly. These components are manufactured from Z 600 mill galvanized steel sheets with 600 g of zinc/mē. After manufacturing the components undergo an industrial cleaning and drying pre-treatment process.Immediately after the pre-treatment the components are electrostatically coated with a dry, polymeric hybrid thermosetting powder. The coated components are then put through a thermally activated curing process during which the powder is fuse bonded to the substrate.
Stringent quality control procedures and regular testing during the coating process assure consistent high quality of the protection system. The fasteners used for assembly have a 3-stage protective coating comprising a zinc phosphate treatment, a zinc rich inorganic resin coating and an aluminum rich organic top coat.