Convert million US gallons per day to cubic foot per minute
1 MGD = 92.83371914 cfm
1 MGD = 92.834 cfm
1 MGD in every volumetric flow rate unit
| liter per day | 3,785,400 L/d |
| cubic centimeter per minute | 2,628,800 cm³/min |
| milliliter per minute | 2,628,800 mL/min |
| US gallon per day | 1,000,000 gpd |
| cubic inch per minute | 160,420 in³/min |
| liter per hour | 157,730 L/h |
| milliliter per second | 43,813 mL/s |
| US gallon per hour | 41,667 gph |
| barrel per day | 23,810 bbl/d |
| cubic foot per hour | 5,570 cfh |
| cubic meter per day | 3,785.4 m³/d |
| liter per minute | 2,628.8 L/min |
| US gallon per minute | 694.44 gpm |
| imperial gallon per minute | 578.25 imp gpm |
| cubic meter per hour | 157.73 m³/h |
| cubic foot per minute | 92.834 cfm |
| liter per second | 43.813 L/s |
| acre-foot per day | 3.0689 ac·ft/d |
| cubic meter per minute | 2.6288 m³/min |
| cubic foot per second | 1.5472 cfs |
| million US gallons per day | 1 MGD |
| million imperial gallons per day | 0.83267 MIGD |
| cubic meter per second | 0.043813 m³/s |
How the conversion works
Multiply by 92.83371914 to go from million US gallons per day to cubic foot per minute, 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? cubic foot per minute to million US gallons per day — 1 cfm = 0.01077194805 MGD.
million US gallons per day to cubic foot per minute — common values
| 1 MGD | 92.833719 cfm |
| 2 MGD | 185.66744 cfm |
| 3 MGD | 278.50116 cfm |
| 5 MGD | 464.1686 cfm |
| 10 MGD | 928.33719 cfm |
| 15 MGD | 1,392.5058 cfm |
| 20 MGD | 1,856.6744 cfm |
| 25 MGD | 2,320.843 cfm |
| 50 MGD | 4,641.686 cfm |
| 75 MGD | 6,962.5289 cfm |
| 100 MGD | 9,283.3719 cfm |
| 250 MGD | 23,208.43 cfm |
| 500 MGD | 46,416.86 cfm |
| 1000 MGD | 92,833.719 cfm |
Other volumetric flow rate conversions
L/min → cfmL/s → cfmm³/h → cfmm³/s → cfmgpm → cfmgpd → cfmMGD → L/minMGD → L/sSolvers that use volumetric flow rate