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VENTS Polyvent 621 series

VENTS Polyvent 621 series
Flexible polyurethane non-insulated air ducts with steel wire frame (450 μm)
Model features
  • Ventilation ducts and fittings
  • Description
  • Modifications
  • Downloads
  • Colour range
  • Packing
  • Order code
  • Accessories
  • Pressure loss diagram
  • Calculation example
Description
Description
DESCRIPTION FEATURES
  • Flexible polyurethane air duct with high-carbon steel wire frame.
  • High flexibility, wear resistance, durability, air tightness, extremely low pressure losses.
  • Heavy flammable.
  • High solvent-, gasoline- and oil vapours resistance.
  • UV- and ozone resistance.
  • Hot gases handling is possible (up to +120 °С).
RECOMMENDED APPLICATION
  • Applied in industrial ventilation systems, the ideal solution for application in woodwork and timber industry, car service and fuel stations, oil refineries. Used for removal of gas mixture with high abrasive dust content. Suitable for outside installation.
Modifications
Modification name
+
Downloads
Downloads
Select document type
  • Advertising and printing products
  • Certificates
  • Technical documentation
Name
"Polyvent 621" product description 02-2020 (pdf 826.57Kb)
Download high quality image "Polyvent 621" (psd 1.56Mb)
Download image "Polyvent 621" for your website (png 293.08Kb)
Colour range
Colour range
Transparent
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Packing
Packing
   
Cardboard box   Unit coloured packing   Net
Order code
Order code
Polyvent 621 Ø / length
Accessories
Accessories
Diffusers and air disk valves   Grilles and hoods   Backdraft dampers   Fittings   Clamps
                 
Pressure loss diagram
Pressure loss diagram

PRESSURE LOSS DIAGRAM PER 1 M STRETCHED AIR DUCT

Calculation example
Calculation example

 

  • Select a curve that matches the air duct diameter [mm], 200 mm in this case.
  • Find the intersection point of this line with the vertical line of the required air flow in m³/h, 500 m³/h in this case.
  • The horizontal line that shows the pressure loss in Pa per 1 m straight air duct crosses this intersection point.
  • Multiply pressure loss value (2.4 Pa/m at 20 °C) by total air duct length to get the total pressure loss value. To calculate pressure loss in case of bends consider each bend as extra air duct meter.
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