What is covered in this document?
This document is part of a series of documents on industrial ventilation, and includes general information about fans.
- context Introduction
- context Units and Measures
- context Ducts
- context Fans
- context Hoods
- context Air Cleaning Devices
- context Installation and Maintenance (general)
- context Troubleshooting
- context Glossary of Common Terms
What types of exhaust fans are available?
There are two main types of exhaust fans:
- context Axial Fans: These fans look like propellers and draw air straight through the fan.
- context Centrifugal fans: These fans look like "squirrel cages" that draw air into the centre of the fan and exhaust it at a 90-degree angle.
Axial or propeller fans
There are three basic types of axial fans: propeller, tubeaxial, and vaneaxial. Propeller fans are most commonly used for dilution ventilation or cooling. These fans have a propeller-shaped blade and a drive motor mounted on a flat frame. They are often mounted on a wall or ceiling. Common examples are your automobile radiator fan or a free-standing room fan. The basic characteristics of these fans include:
Tubeaxial and vaneaxial fans are propeller fans made to fit in a duct.
The tubeaxial fans have the propeller and the drive motors mounted in tubes. The clearance between the propeller and tube is very small to improve airflow efficiency.
The vaneaxial fans are tubeaxial fans with air straightening vane before and behind the propeller.
These fans usually limited to "clean air" applications such as exhaust ducts going through the roof.
Where the exhaust air is at a high temperature or contains contaminants (e.g., grease, corrosive, etc., such as in kitchens or paint booths) that could damage the drive motor, a bifurcated axial fan could be used. The design of this axial fan keeps out the drive motor of the air stream.
- context that they can move large amounts of air if there is little resistance, and
- context are not suited for local exhaust ventilation because they do not provide enough suction to draw air through the system.
Centrifugal fans
There are three types of centrifugal fans determined by the type of fan blades:
The fans in your home furnace, vacuum cleaner and hairdryer are examples of centrifugal fans. They can operate against a high resistance and are typically used in local exhaust ventilation systems. The rugged radial blade centrifugal fans are the best type for exhausting heavy amounts of dust because they are less likely to become clogged or abraded by the dust.
- context forward inclined blades,
- context backward inclined blades, and
- context straight radial blades.
How do you know if the correct type of fan has been selected?
Selection of the proper fan can be complicated and should be done by a ventilation or fan expert. However, you can make the following observations to determine if the fan selected is appropriate:
Capacity and physical limitations
You may or may not know how much air has to be moved by the fan. You may also not know the amount of resistance in the exhaust system that the fan has to overcome and what is the fan's efficiency. However, the following general information may be helpful:
- context Fan size should be determined by performance requirements. Inlet size and location, fan weight and ease of maintenance also must be considered. The most efficient fan size may not fit the physical space available.
- context On packaged fans, the motor is furnished and mounted by the manufacturer (direct-drive). On larger units, the motor is mounted separately and coupled directly to the fan or indirectly by a belt drive.
- context Direct-drive fans offer a more compact assembly and assure constant fan speed. Fan speeds are limited to available motor speeds. Capacity is set during construction.
- context Belt drive fans offer flexibility in the adjustment of the fan speed. The speed can be changed by altering the drive ratio. This flexibility may be important in some applications where there is the need to provide for changes in system capacity or pressure requirements determined by modifications of the process, hood design, equipment location or air cleaning equipment.
- context It is normally a custom to select a fan that can supply the required airflow (volume and pressure) at no more than 80% of its full-rated speed. However, the motor selected should be able to handle the horsepower required to achieve that rated speed (i.e., a speed increase of 20%).
What should I know about inspection and maintenance of fans?
Fans can go "out of balance" because material builds up on the fan blades, or because of wear. Imbalanced fans will vibrate and may cause damage to various parts of the fan (blades, housing, motor, etc.). It is important to keep fans clean and properly balanced, particularly if the air being removed contains abrasive, sticky or wet materials. Scheduled maintenance should check items including:
- requirement bearings (lubrication, vibration),
- requirement belt drives,
- requirement coupling or belt alignment,
- requirement fan blades (impellers) for proper alignment and rotation,
- requirement bolts and screws for tightness,
- requirement condition of impeller (wear or accumulation), and
- engineering safety guards.
What should I know about fan discharge?
Air discharged from a fan should be kept away from inlets (intake) of the make-up air system. In this way, the make-up air system will draw only clean, outdoor air into the workplace.
The discharge exhaust stacks should be high enough from the roof so that contaminants do not re-enter the workplace. Generally, they should be located no closer than 15.24 m (50 feet) from the inlet to prevent recirculation of contaminants. Stacks work best when they are tall, usually at least 3 m (10 feet) above the roofline.