Convert Square Feet per Hour to Square Feet per Second
Square Foot per Hour (ft²/h) to Square Foot per Second (ft²/s) kinematic viscosity conversion — enter any value below to get an instant result, or use the table for common values.
Results from this calculator are estimates provided for general informational purposes only, based on formulas, rates, and standards commonly accepted as of 2026. Figures may differ slightly from other calculators or professional sources due to rounding methods, differing assumptions, or regional regulations, and rules may change over time. Always consult a qualified professional — such as a financial advisor, healthcare provider, or other relevant specialist — before making decisions based on these results.
Result
1 ft²/h = 0.00027777778 ft²/s
1 Square Foot per Hour = 0.00027777778 Square Feet per Second
1 Square Foot per Second = 3600 Square Feet per Hour
1 ft²/h in every supported unit
Conversion chart: Square Foot per Hour to Square Feet per Second
Conversion table
| Square Foot per Hour (ft²/h) | Square Foot per Second (ft²/s) |
|---|---|
| 0.01 ft²/h | 2.77778E-06 ft²/s |
| 0.1 ft²/h | 2.77778E-05 ft²/s |
| 1 ft²/h | 0.00027777778 ft²/s |
| 2 ft²/h | 0.00055555556 ft²/s |
| 3 ft²/h | 0.00083333333 ft²/s |
| 5 ft²/h | 0.0013888889 ft²/s |
| 10 ft²/h | 0.0027777778 ft²/s |
| 20 ft²/h | 0.0055555556 ft²/s |
| 50 ft²/h | 0.013888889 ft²/s |
| 100 ft²/h | 0.027777778 ft²/s |
| 1000 ft²/h | 0.27777778 ft²/s |
Square Foot per Hour (ft²/h)
Definition: A slower-timescale US customary kinematic viscosity unit, pairing the square foot with the hour for gradual flow or diffusion processes.
History: Formed by substituting the hour for the second in the square-foot-based unit, matching the hourly timescale common in US process and heat-transfer engineering.
Current use: Used occasionally in US heating, ventilation, and process engineering contexts where flow-related quantities are tracked on an hourly basis.
Square Foot per Second (ft²/s)
Definition: A US customary kinematic viscosity unit combining the square foot with the second, used where American engineering practice favors imperial area and time units.
History: Built from the square foot once US engineering standardized customary units for area alongside SI-based physical constants, giving American fluid dynamics texts a matching imperial unit.
Current use: Occasionally found in US aerospace and mechanical engineering references that otherwise use imperial units throughout their fluid flow calculations.
Supported Units
| Unit | Symbol | In m²/s |
|---|---|---|
| Square Meter per Second | m²/s | 1 m²/s |
| Square Meter per Hour | m²/h | 0.0002777778 m²/s |
| Square Centimeter per Second | cm²/s | 0.0001 m²/s |
| Square Millimeter per Second | mm²/s | 1E-06 m²/s |
| Stokes | St | 0.0001 m²/s |
| Centistokes | cSt | 1E-06 m²/s |
| Millistokes | mSt | 1E-07 m²/s |
| Kilostokes | kSt | 0.1 m²/s |
| Square Foot per Second | ft²/s | 0.09290304 m²/s |
| Square Foot per Hour | ft²/h | 2.58064E-05 m²/s |
| Square Inch per Second | in²/s | 0.00064516 m²/s |
About These Parameters
- Value
- The kinematic viscosity value you want to convert, expressed in the "From" unit. Accepts decimals.
- From Unit
- The unit your input value is currently measured in — a viscometer readout in centistokes, or an SI-based engineering figure in m²/s.
- To Unit
- The unit you want the result converted into. Use the swap button to flip From and To instantly.
How Viscosity - Kinematic Conversion Works
The Formula
Every unit here is defined by a fixed multiplier relative to square meters per second. To convert a value from one unit to another:
result = value × (factor of "From" unit ÷ factor of "To" unit)
For Square Foot per Hour → Square Foot per Second: multiply by 0.00027777778. For example, 1 ft²/h × 0.00027777778 = 0.00027777778 ft²/s.
Kinematic Viscosity vs. Dynamic Viscosity
This page converts between units of KINEMATIC viscosity (area per time, e.g. m²/s), which is dynamic viscosity divided by density. The site's separate Viscosity - Dynamic Converter covers the underlying force-based quantity (e.g. pascal-seconds) directly. Converting between the two is not a fixed unit conversion the way m²/s to stokes is — it requires the specific fluid's density, since kinematic viscosity = dynamic viscosity ÷ density, and density varies fluid to fluid and with temperature.
Stokes and Centistokes
The stokes (St) and its more practical submultiple, the centistokes (cSt), are CGS-based units that still dominate the oil and lubricant industry despite predating SI. Water at 20°C measures almost exactly 1 cSt, which makes centistokes an intuitive reference point, and motor oil viscosity grades are defined by kinematic viscosity ranges in cSt measured at a standardized 100°C — one reason cSt appears on virtually every oil datasheet and viscometer readout worldwide.
Example
A kinematic viscosity of 1 ft²/h equals 0.00027777778 ft²/s. For scale, water at 20°C measures about 1 cSt (0.000001 m²/s), while a typical SAE 30 motor oil measures roughly 10-12 cSt at 100°C — around ten times more resistant to gravity-driven flow than water.
Frequently Asked Questions
How many Square Feet per Second are in 1 Square Foot per Hour?
1 Square Foot per Hour (ft²/h) equals exactly 0.00027777778 Square Feet per Second (ft²/s).
What is kinematic viscosity?
Kinematic viscosity is a fluid's resistance to flow under gravity alone, equal to its dynamic (absolute) viscosity divided by its density. It's measured in units of area per time, such as square meters per second or, far more commonly in practice, centistokes.
How is kinematic viscosity different from dynamic viscosity?
Dynamic viscosity measures a fluid's resistance to shear force directly (e.g. in pascal-seconds), while kinematic viscosity divides that figure by the fluid's density, capturing how the fluid actually flows under its own weight. Two fluids with the same dynamic viscosity but different densities will have different kinematic viscosities, and vice versa.
How accurate are these conversions?
Every conversion factor used here is the exact, internationally recognized relationship between the underlying area and time units — results are limited only by floating-point display precision, not by rounded conversion constants.
Why is centistokes used for motor oil instead of the SI unit?
The SI unit, square meter per second, is far too large for everyday liquids — water's kinematic viscosity is only 0.000001 m²/s. Centistokes rescales that to a convenient "about 1" for water, which is why the lubricant industry standardized on it long before SI units existed and never switched away.