Functional Description - Ultrasonic Air Humidifier - Boga AIRWIN UB-1 4/CT/3.1 Series Installation And Operating Instructions Manual

Ultrasonic universal humidifier
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5.3

Functional description - ultrasonic air humidifier

All frequencies above 20,000 Hz are called ultrasonic.
According to their physical nature, acoustic waves consist of mechanical oscillations of compressible
media. These oscillations develop due to the deflection of the particles of a compressible material from
their equilibrium position. Acoustic waves are bound to a medium and thus do not occur in the vacuum.
Oscillations develop as a result of a change in pressure. Repeated pressure increase and pressure
reduction produce different acoustic waves.
In order to be able to use ultrasonic waves for air humidification, electrical energy must be converted
into mechanical energy. This takes place in the piezoelectric transducer.
A vibration unit consists of the resonance circuit where the high frequency of
~ 1.7 MHz is produced and the piezoelectric transducer to convert the electrical frequency into a
proportional mechanical oscillation. This frequency is not audible for human beings or animals.
The piezoceramic transducers are attached
to the bottom of the fluid tank. During
excitation of the transducer, the water leads
the ultrasonic vibrations to the boundary
layer between water and air. Constant
compression and decompression of the
water gauge over the transducer causes
cavitation in the immediate proximity of the
water surface. Thus, crossing capillary
waves are developed, the finest water
particles of which, the aerosols, are
produced in the wave crest.
The aerosols are delivered by the air flow in the humidifier and quickly mix with the ambient air. They
have a small diameter (0.001 - 0.005 mm) and thus form a freely floating mist. The droplet diameter
depends on the surface tension and the density of the medium, but also on the excitation frequency.
The higher the excitation frequency, the smaller is the diameter of the droplets.
[MBA_UB-1...4-CT_3.1_EN] Rev.: 02/2022 Translation of the original instructions
No liability accepted for translation or printing errors. Subject to changes in dimensions, weights and other technical data.
All rights reserved. Modifications, reprints and photomechanical reproduction, even in extract from, require the express perm ission of BOGA GmbH, Werkstraße 16, D-59494 Soest.
Air bubbles
Fluid tank
Fig. 2 - Schematic sketch aerosol production
Point of focusing
Capillary waves
Demineralised
water
Ultrasonic transducer
9

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