What is covered in this document?
This document covers general considerations on the installation and maintenance of industrial ventilation systems, and is part of the following series of documents on industrial ventilation.
- 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 are some considerations when installing a new industrial ventilation system?
The installation, testing, and maintenance of an industrial ventilation system must be done by specialized and competent professionals including industrial hygienists, ventilation engineers and other qualified personnel. All industrial ventilation systems should be designed to provide enough air at each hood to properly protect the worker from excessive contaminant exposure. If the system is not properly designed, installed and maintained, it may not be effective in eliminating airborne contaminants, which may result in adverse health effects, or safety and operations problems. An installation and start-up evaluation procedure must be written and made available to all plant personnel. Such procedures must be followed to ensure that, the system is properly balanced before the start-up.
The following are some helpful tips to ensure proper functioning of an industrial ventilation system:
NOTE: It should be the responsibility of the installing contractor to ensure that all wiring, starters and controls are in place. In addition, the fan should be observed to ensure that the rotation direction is correct. The intent is to have a complete and working system before the start-up is begun. For example, a system may be started, and after proportional balancing of all ducts, total flow may only be at 80% of the design requirement when the fan damper is fully open. This result would require some change to the system (speed change for fan, motor change, ductwork changes etc.) in order to achieve the designed specifications.
- context Review all design and installation documents including requirements for fire and explosion protection, and minimum hood and duct velocities.
- context Review operating conditions and verify locations for test ports, dampers, balance valves and fittings.
- context Review the ventilation system design to ensure all access doors are closed and duct interferences have been checked and eliminated.
- context Review the operating requirements of the fan, motor, and drive system.
- context Verify that all compressed air, water, or other auxiliary connections to the system and control device operate and function to specifications.
- context Examine the system for other functional deficiencies that would make adjusting and balancing in the future more difficult.
What to check to ensure the effectiveness of the industrial ventilation system?
Most of ventilation system problems can be avoided by periodic monitoring of airspeed and pressure in the system and maintenance. The airflow at the hood can be visually checked with inexpensive smoke generators (smoke tubes) or measured with air velometers. Ventilation specialists may be needed to fix or redesign more complicated ventilation problems.
If an existing industrial ventilation system appears to be functioning improperly, the following checks can be made without extensive measurements or expert help:
- context Is the fan belt broken or slipping?
- context Is the fan wired backwards (reversed polarity)?
- context Are ducts clogged with dust?
- context Are there holes, cracks or openings in the ducts?
- context Is the air cleaner clogged?
- context Are any dampers in the duct closed?
- context Is there insufficient makeup air?
- context Have ducts been changed to include more length, more or sharper bends, or abrupt diameter changes?
- context Have additional hoods and ducts been added? (Without proper airflow balancing, some hoods in a multiple system may have inadequate flow or the fan may be too small to handle the additional resistance.)
- context Has the contaminant source been moved further away from the hood opening?
- context Is the canopy hood located as close to the source as possible without letting the employees work over the source?
- context Is access to enclosing hoods provided?
- context Is more contaminant being generated at the source?
- context Are cooling fans causing cross drafts?
- context Have employees modified the hood because it interferes with their job tasks?
What are the reasons of industrial ventilation system failure?
The reasons for industrial ventilation system failure include:
Inadequate maintenance
When ventilation systems are not maintained routinely, they eventually stop delivering the required exhaust airflow due to either natural system degradation over time or from unauthorized changes.
Inadequate airflow speed
Systems transporting gases and mists may experience gas pocketing and mist pooling inside the ductwork if the transport velocity is too low (see the Glossary of Terms).
If the minimum transport velocities in the branches or elbows of the duct network are less than the acceptable ranges, some of the branches or elbows will get blocked by settled particles. This build-up slows down air velocity and results in more dust dropout and adds to the problem. Without maintenance to clear the dropout, the elbow will eventually get blocked.
Malfunctioning air cleaner
If the air cleaner develops operating problems, it can cause a general reduction of system airflow and loss of protection for the workers. In addition, unacceptable levels of environmental emissions might also occur. Air cleaning devices, especially baghouse filter fabrics, can get blocked by dust build-up.
Reduced performance of the exhaust fan
Exhaust fan capability can change either due:
Insufficient make-up air supply
The supply air system (make-up air) is the other important component of the industrial ventilation system. The air exhausted by the industrial ventilation system must be replaced by the make-up air system to avoid negative air pressure in the building. A negative pressure inside the building can reduce industrial ventilation system airflow.
Modifications in the ventilation system
Unauthorized changes can alter the system design parameters. Only qualified professionals should make changes to an existing ventilation system.
- context material build-up (e.g., dust or paint) on the fan impellor that reduce its air moving performance, or
- context mechanical failures of the fan's ball bearings or pulley belts.
What are some common causes of the ineffectiveness of an industrial ventilation system?
Examples of industrial ventilation systems issues include:
A prompt investigation is needed to determine the cause of above issues.
Often, by the time the issues are noticeable, the system has already degraded. Probable causes of such problems include:
It takes a lot of hard work cleaning ducts or shovelling out the baghouse filter hopper to get the system back on line. A periodic monitoring program for the industrial ventilation system or the local exhaust ventilation (LEV) can help predict the potential problems so that the remedial actions are not a difficult job.
- context dust escaping from the hoods,
- context contaminants blowing out the exhaust stack, or
- context contaminant removal does not meet the target (contaminants in air samples exceed recommended exposure limits).
- context plugged ducts,
- context plugged air collector, or
- context any other condition that can reduce system airflow.
What steps are required for monitoring of the industrial ventilation system?
Periodic monitoring to check the effectiveness of industrial ventilation system or local exhaust ventilation (LEV) should involve the following steps (Note: The following measurements must be carried out by qualified persons such as certified occupational hygienists or ventilation specialists).
- context Gather original airflow data taken at the system start-up time. This data includes air velocities and static pressures throughout the system at the chosen test points. This data is referred to as "Baseline measurements".
- context Measure system static pressure and airflow velocity at test points. This data is referred to as "Monitoring Data".
- context Compare the monitoring data to the baseline measurements to make sure that the air velocities or static pressures for which the system was designed are actually achieved. This data is referred to as "Restoring the System to Baseline".
- context A difference of greater than 20% between the measured static pressure and the baseline static pressure is an early warning of system failure or degradation.
- context Take area and personal air samples while the industrial ventilation system is on. The exposure levels should be below the exposure limits if the industrial ventilation system is working as designed. According to some government legislation, this type of measurement is the only way to check the effectiveness of an industrial ventilation system.