Ventilation is the mechanical system in a building that brings in “fresh” outdoor air and removes the “contaminated” indoor air.
In a workplace, ventilation is used to control exposure to airborne contaminants. It is commonly used to remove contaminants such as fumes, dusts, and vapours, in order to provide a healthy and safe working environment.
Industrial systems are designed to move a specific amount of air at a specific speed (velocity), which results in the removal (or “exhaust”) of undesirable contaminants, perfectly matched to the type of work and the rate of contaminant release at that workplace.
Controlling exposure to hazardous airborne contaminants.
A well-designed ventilation system is critical for industrial operations. There are four primary purposes of implementing a robust mechanical ventilation strategy in your facility.
Provide a continuous, mechanical supply of fresh outside air to the working environment.
Maintain ambient temperature and internal humidity at perfectly comfortable and optimal levels.
Significantly reduce potential fire or explosion hazards by exhausting volatile gases and dusts.
Remove or completely dilute airborne contaminants like fumes, vapours, and heavy industrial dusts.
Industrial ventilation systems are highly versatile, offering powerful contaminant extraction and fresh air supply for a wide range of critical applications.
Heavy-duty extraction systems for the safe removal of welding fumes, industrial dust, and manufacturing byproducts.
Medical-grade ventilation and isolation room exhaust systems to prevent the spread of airborne pathogens.
High-capacity exhaust hoods and makeup air units for the rapid removal of extreme heat, smoke, and grease.
Large-scale air exchange systems designed to manage humidity, control temperatures, and exhaust vehicle emissions.
Specialized corrosion-resistant extraction networks for the safe handling of hazardous and volatile chemical vapours.
Fume hoods and dedicated exhaust systems ensuring a safe, contaminant-free environment for students and researchers.
We assess your facility to identify the types of contaminants (fumes, dust, vapors) and calculate the rate of release to determine the exact required air velocity.
Our engineers design the system architecture, sizing the hoods for maximum capture efficiency, mapping the ductwork routes, and selecting appropriately rated fans and filters.
Our execution teams install the robust mechanical systems, securely mounting the intake hoods, assembling the sealed ductwork, and rigging the main exhaust units.
Before finalizing the project, we meticulously measure the airflow velocities, test the extraction rates, and balance the entire network to ensure total safety and compliance.
We’re ready to discuss your engineering project and provide technical consultation.
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