Central Air conditioning plants, Diesel Generator Sets, Aluminium Die casting M/C, Industrial Refrigeration, Induction Furnace, Quenching Oil Cooling, Chemical Process cooling, Hydraulic Machines, As Effluent Coolers, Air Compressor, Plastic Moulding M/C, As Crystallizers
FANLESS INDUCED DRAUGHT WHIRLJET NON-CORROSIVE COOLING TOWER
 
Re-circulating Process Water For The Following Equipments
   

•  Central Air conditioning plants
•  Diesel Generator Sets
•  Aluminium Die casting M/C
•  Industrial Refrigeration
•  Induction Furnace
•  Quenching Oil Cooling
•  Chemical Process cooling
•  Hydraulic Machines
•  As Effluent Coolers
•  Air Compressor
•  Plastic Moulding M/C
•  As Crystallizers

Louvers
 
 

Hollow Cone Whirljet Spray Nozzle :

Hollow Cone nozzles are best for cooling tower application, which requires good atomization of liquid (water) and quick heat transfer. Nozzles are tangential entry type. Free passage is given to the water to form uniform hollow cone spray pattern with non-clogging characteristic.
 
 
 

Comparison With Other Fanless Cooling Tower

Aqua Cool Cooling Tower  Other Fanless Cooling Tower
     
 1  Circular Shape : Air circulation is better, as ventury effect      is more in circular shape. Hence better efficiency, Drift      losses are@0.02% due to inbuilt drift eliminators in      louvers.
 
 1  Rectangular Shape: Air suction is inferior as Four      corners of C.T. act as dead zones. Hence moderate      efficiency.
 2  100% polymer composite including structure and spray      assembly,  hence totally corrosion free. We use NPG      ISO Gel coats for outer  surface of C.T. body, so better      weather resistance & longer Nfe.
 
 2  Only louvers are of FRP structure, spray assembly is       of  M.S. prone to corrosion. No use of gel coat, hence       poor  weather  resistance and poor life
 3  Hardware : Main structural bolts are 16mm in dia. No      falling of  louvers through out the life of C.T. Falling of      nozzals is negligible due to correct engineering design.
 
 3  Bolts are ¾ inch in dia.only. Repeated failing of       louvers.  Falling of  nozzals is very high.
 4  Resistance to high wind velocities is better due to      circular  (aerodynamic) shape
 
 4  Resistance to high wind velocities is poor due to      rectangular. shape.
 5  Superior quality of polymer Composite.
 
 5  Inferior quality of Polymer Composite.
 6  Drift losses are@ 0.02% due to inbuilt drift eliminators in louvers
   
    Drift Eliminator Drift Eliminator
 6  Drift losses are @ 0.2% as no drift eliminator in      louvers.
   
    No Drift Eliminator No Drift Eliminator
 
 
 
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