Convert cubic foot per minute to million US gallons per day
1 cfm = 0.01077194805 MGD
1 cfm = 0.010772 MGD
1 cfm in every volumetric flow rate unit
| liter per day | 40,776 L/d |
| cubic centimeter per minute | 28,317 cm³/min |
| milliliter per minute | 28,317 mL/min |
| US gallon per day | 10,772 gpd |
| cubic inch per minute | 1,728 in³/min |
| liter per hour | 1,699 L/h |
| milliliter per second | 471.95 mL/s |
| US gallon per hour | 448.83 gph |
| barrel per day | 256.47 bbl/d |
| cubic foot per hour | 60 cfh |
| cubic meter per day | 40.776 m³/d |
| liter per minute | 28.317 L/min |
| US gallon per minute | 7.4805 gpm |
| imperial gallon per minute | 6.2288 imp gpm |
| cubic meter per hour | 1.699 m³/h |
| cubic foot per minute | 1 cfm |
| liter per second | 0.47195 L/s |
| acre-foot per day | 0.033058 ac·ft/d |
| cubic meter per minute | 0.028317 m³/min |
| cubic foot per second | 0.016667 cfs |
| million US gallons per day | 0.010772 MGD |
| million imperial gallons per day | 0.0089695 MIGD |
| cubic meter per second | 0.00047195 m³/s |
How the conversion works
Multiply by 0.01077194805 to go from cubic foot per minute to million US gallons per day, or divide by it to go back. Every conversion on this site routes through the SI value (m³/s) rather than a table of pairwise factors, so a round-trip returns exactly what you started with.
Going the other way? million US gallons per day to cubic foot per minute — 1 MGD = 92.83371914 cfm.
cubic foot per minute to million US gallons per day — common values
| 1 cfm | 0.010771948 MGD |
| 2 cfm | 0.021543896 MGD |
| 3 cfm | 0.032315844 MGD |
| 5 cfm | 0.05385974 MGD |
| 10 cfm | 0.10771948 MGD |
| 15 cfm | 0.16157922 MGD |
| 20 cfm | 0.21543896 MGD |
| 25 cfm | 0.2692987 MGD |
| 50 cfm | 0.5385974 MGD |
| 75 cfm | 0.8078961 MGD |
| 100 cfm | 1.0771948 MGD |
| 250 cfm | 2.692987 MGD |
| 500 cfm | 5.385974 MGD |
| 1000 cfm | 10.771948 MGD |
Other volumetric flow rate conversions
L/min → MGDL/s → MGDm³/h → MGDm³/s → MGDgpm → MGDcfm → L/mincfm → L/scfm → m³/hSolvers that use volumetric flow rate