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used Blower - 23387 - TIPP Umwelt- und Verfahrenstechnik GmbH

Blower




details to article: 23387

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Year of manufacture:unbekannt
Pieces:1
Condition:gebraucht / used / second hand



technical data

Weight  150 kg (approx.)
Length  1300 mm
Height  1000 mm
Width  600 mm
Material  (steel)
Connections  (square connection 220 x 165 inside)
Connections  (square connection 315 x 225mm aussen)
Further information  (motor data maunfacurer SEVA type 16 0 MA 2)
Rotations  2930 1/min
Voltage  400 V
Frequency  50 Hz
Amperage  19.9 A
Power  11 kW
Defects  leichte (protection housing is missing)


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informations about: blowers / ventilators

A centrifugal fan ,also blower, or squirrel-cage fan, as it looks like a hamster wheel, is a mechanical device for moving air or other gases. It has a fan wheel composed of a number of fan blades, or ribs, mounted around a hub. The hub turns on a driveshaft that passes through the fan housing. The gas enters from the side of the fan wheel, turns 90 degrees and accelerates due to centrifugal force as it flows over the fan blades and exits the fan housing.
Centrifugal fans can generate pressure increases in the gas stream. Accordingly, they are well-suited for industrial processes and air pollution control systems. They are also common in central heating or cooling systems.
Centrifugal compressors, sometimes termed radial compressors, are a sub-class of dynamic axisymmetric work-absorbing turbomachinery.
Centrifugal impeller with a highly polished surface likely to improve performance
Jet engine cutaway showing the centrifugal compressor and other parts
The idealized compressive dynamic turbo-machine achieves a pressure rise by adding kinetic energy or velocity to a continuous flow of fluid through the rotor or impeller. This kinetic energy is then converted to an increase in potential energy or static pressure by slowing the flow through a diffuser.
Imagine a simple case where flow passes through a straight pipe to enter centrifugal compressor. The simple flow is straight, uniform and has no swirl. As the flow continues to pass into and through the centrifugal impeller, the impeller forces the flow to spin faster and faster. According to a form of Eulers fluid dynamics equation, known as pump and turbine equation, the energy input to the fluid is proportional to the flows local spinning velocity multiplied by the local impeller tangential velocity. In many cases the flow leaving centrifugal impeller is near or above 1000 ft. per s or approximately 300 m per s. It is at this point, in the simple case according to Bernoullis principle, where the flow passes into the stationary diffuser for the purpose of converting this velocity energy into pressure energy.
From Wikipedia, the free encyclopedia

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