Cubic Feet Per Minute to Cubic Metres Per Second Converter
Instantly convert airflow and volume flow rates from Cubic Feet Per Minute (CFM) to Cubic Metres Per Second (m³/s). Accurate for HVAC, engineering, and industrial applications.
Calculate Your Airflow Conversion
Enter the volume flow rate in Cubic Feet Per Minute (CFM) below to get an instant, accurate conversion to Cubic Metres Per Second (m³/s).
Flow Rate Converter
Enter your CFM value to see the estimated metric equivalent
Enter the airflow or fluid flow rate in CFM
Converted Flow Rate
Calculated based on standard geometric volume conversion
CFM to m³/s Reference Chart
Standard conversions for common airflow rates. Use this to verify your manual calculations or quickly estimate metric equivalents for HVAC and industrial systems.
| Flow Rate (CFM) | Cubic Metres / Second (m³/s) | Cubic Metres / Minute (m³/min) | Common Application |
|---|---|---|---|
| 100 CFM | 0.0472 | 2.83 | Small bathroom extractor fan |
| 500 CFM | 0.2360 | 14.16 | Residential kitchen range hood |
| 1,000 CFM | 0.4719 | 28.32 | Small commercial HVAC unit |
| 5,000 CFM | 2.3597 | 141.58 | Industrial ventilation system |
| 10,000 CFM | 4.7195 | 283.17 | Large warehouse air handling unit |
CFM to m³/s Conversion FAQ
Everything you need to know about converting volume flow rates for your engineering or HVAC project.
To convert Cubic Feet Per Minute (CFM) to Cubic Metres Per Second (m³/s), multiply the CFM value by 0.000471947. The formula is: m³/s = CFM × 0.000471947.
There are approximately 2,118.88 CFM in 1 cubic metre per second (m³/s). This is calculated by dividing 1 by the conversion factor (1 / 0.000471947).
CFM is commonly used in the US and UK for HVAC and ventilation, while m³/s is the standard SI unit used globally in engineering, scientific research, and industrial applications. Converting ensures accurate equipment sizing and compliance with international standards.
The mathematical conversion factor (0.000471947) is based on geometric volume and time, so it remains constant. However, actual air mass flow rate will vary with temperature and pressure, which is why Standard CFM (SCFM) is often used in precise engineering calculations.
