Darcy's Law Calculator
Use our Darcy's law calculator to calculate the fluid flow rate through a porous medium.
The formula
Q = kA(dh ÷ dL); seepage velocity = Darcy velocity ÷ porosity
Darcy velocity is not a velocity
Darcy's law gives a flux — volume per unit total cross-sectional area — and dividing it by area gives something with the units of velocity that is not the speed of any water. The actual water moves only through the pore space, so its speed is the Darcy velocity divided by the effective porosity, typically three to five times higher.
That distinction decides contamination timescales. A plume travels at the seepage velocity, so estimating arrival times from the Darcy velocity overstates them by the reciprocal of porosity — a factor of three or more, which is the difference between a decade and thirty years.
Hydraulic conductivity spans roughly nine orders of magnitude from clean gravel to unfractured granite. Nothing else in the calculation comes close to that range, so identifying the material correctly dominates every other source of error. A gradient measured to 1% is wasted effort if the soil class is wrong.
The law assumes laminar flow, and it holds over an extraordinary range because groundwater moves so slowly. It does break down in coarse gravel under steep gradients, where flow turns turbulent and discharge stops rising linearly with gradient.