Ampelair Industrial Ventilators

Aluminium Range

  • Strong, lightweight construction.
  • Manufactured from high grade aluminium.  Powder coat finish available to suit Colorbond® range.
  • Dual bearing system.
  • Square to round base on all models.  Optional variable pitch base available for AA360.
  • Manufactured to provide long trouble free operation in Industrial and Commercial applications.

Size Range

 

ALUMINIUM
MODEL THROAT VENTILATOR HEAD SQUARE TO ROUND BASE VARIABLE PITCH BASE
    WIDTH HEIGHT WIDTH HEIGHT WIDTH HEIGHT
AA500 500mm 640mm 320mm 610mm 415mm 750mm 190mm
AA600 600mm 730mm 390mm 705mm 430mm - -

 

Stainless Steel Range

  • Stainless Steel bearings fully enclosed and self lubricating in a double row casing.
  • Bearings are maintenance free, designed to withstand extreme environments.
  • Bearing assembly provides low friction with minimal drag, resulting in a longer life.
  • The weather vane is designed to aerodynamic principals, enhancing performance.
  • Lower profile design and Stainless Steel construction provides better aesthetics.
  • Also available in powder coated finishes.

Size Range

STAINLESS STEEL
MODEL THROAT VENTILATOR HEAD SQUARE TO ROUND BASE VARIABLE PITCH BASE
    WIDTH HEIGHT WIDTH HEIGHT WIDTH HEIGHT
SS150 150mm 230mm 210mm 210mm 210mm - -
SS300 300mm 340mm 370mm 350mm 360mm 500mm 180mm
SS500 500mm 640mm 320mm 610mm 415mm 750mm 190mm
SS600 600mm 730mm 390mm 705mm 430mm - -
SS800 770mm 930mm 580mm 880mm 480mm - -

 

SV Industrial Range

  • Stainless Steel bearings fully enclosed and self lubricating in a double row casing.
  • Bearings are maintenance free, designed to withstand extreme environments.
  • Bearing assembly provides low friction with minimal drag, resulting in a longer life.
  • Two part shaft system comprising anti corrosive steel axle fully sealed in a fire resistant nylon casing.
  • The tough nylon casing ensures the original alignment of head and axle is always maintained, even after wind pressure stress.
  • The straight vanes are free flowing.
  • Optimum efficiency has been achieved through the vane's angle and maximum available surface area.
  • Lower profile design and straight vanes provide better aesthetics.
  • Also available in powder coated finishes.

Size Range

SV INDUSTRIAL
MODEL THROAT VENTILATOR HEAD SQUARE TO ROUND BASE VARIABLE PITCH BASE
    WIDTH HEIGHT WIDTH HEIGHT WIDTH HEIGHT
SV150 150mm 320mm 260mm 210mm 210mm - -
SV300 300mm 480mm 380mm 350mm 360mm 495mm 190mm
SV450 450mm 625mm 405mm 610mm 415mm 740x640mm 280mm
SV600 600mm 770mm 450mm 705mm 430mm 900mm 280mm
SV800 800mm 985mm 535mm 880mm 480mm - -
SV950 950mm 1130mm 575mm 1110mm 680mm - -

 

Vent Capacity Table

Stack Height Metres  Wind Speed Km/hr.  Temp Diff. °C  Model SS/AA
150 300 450 600 800 950
3 6 6 0.04 0.15 0.35 0.61 1.16 1.62
12 0.04 0.16 0.36 0.63 1.20 1.67
18 0.04 0.17 0.38 0.66 1.27 1.76
8 6 0.05 0.18 0.42 0.73 1.39 1.93
12 0.05 0.18 0.43 0.74 1.41 1.96
18 0.05 0.19 0.45 0.79 1.50 2.09
12 6 0.07 0.27 0.63 1.09 2.08 2.89
12 0.07 0.28 0.64 1.11 2.11 2.94
18 0.07 0.28 0.64 1.12 2.13 2.96
16 6 0.08 0.34 0.77 1.34 2.56 3.56
12 0.09 0.34 0.79 1.38 2.63 3.66
18 0.09 0.35 0.81 1.41 2.68 3.74
6 6 6 0.04 0.16 0.36 0.63 1.20 1.67
12 0.05 0.19 0.42 0.73 1.40 1.94
18 0.05 0.19 0.43 0.75 1.43 1.99
8 6 0.05 0.18 0.42 0.74 1.41 1.96
12 0.05 0.19 0.44 0.76 1.46 2.03
18 0.05 0.2 0.46 0.8 1.52 2.12
12 6 0.07 0.28 0.64 1.11 2.11 2.94
12 0.07 0.29 0.66 1.14 2.18 3.03
18 0.07 0.31 0.71 1.24 2.36 3.29
16 6 0.09 0.34 0.79 1.38 2.63 3.66
12 0.09 0.35 0.81 1.41 2.70 3.75
18 0.09 0.37 0.84 1.47 2.80 3.90
9 6 6 0.04 0.17 0.38 0.66 1.27 1.76
12 0.05 0.18 0.43 0.75 1.43 1.99
18 0.05 0.21 0.48 0.84 1.60 2.23
8 6 0.05 0.2 0.45 0.79 1.50 2.09
12 0.05 0.21 0.46 0.8 1.52 2.12
18 0.06 0.23 0.53 0.92 1.76 2.45
12 6 0.07 0.28 0.64 1.12 2.13 2.96
12 0.08 0.3 0.71 1.24 2.36 3.29
18 0.08 0.32 0.74 1.28 2.45 3.40
16 6 0.09 0.35 0.81 1.41 2.68 3.74
12 0.09 0.37 0.84 1.47 2.80 3.90
18 0.09 0.37 0.86 1.49 2.84 3.95

 

Number of Vents

Calculations to decide the number of vents.

  1. Determine the volume of the building. (Fig. 1)

    Volume of section A = 0.5 x L x W x Ha

    Volume of section B = L x W x Hb

    Total building volume = Volume of section A + Volume of section B

    Note: For factories, the combined volume A + B should be used.

    Where Volume B is air-conditioned, only Volume A is used to calculate the number of ventilators required.  No air should be drawn from the air conditioner space.

    Using ventilators in the ceiling space of air conditioned building reduces the load on the air-conditioning plant and helps reduce power consumption.

     

     

  2. Select the number of ventilators required:

METRIC  = V x A/ch
                EX/c x 3.6

Where:

V = volume of building or roof space

A/ch = air changes per hour

EX/c = Exhaust capacity of ventilator

Consideration should be given to the space occupied by stored goods or machinery.  The adjustment to volume can reduce the number of vents required by up to 50%. 

Downloads

 

Brochure

Ampelair Industrial Ventilators

SV Industrial Ventilators

Direct Vent Kit

 

 




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