Overland Flow Time of Concentration

The overland flow time of concentration, tov, can be computed using the equation

tov=Lslp3600vovt_{ov}=\frac{L_{slp}}{3600*v_{ov}} 2:1.3.3

where LslpL_{slp} is the subbasin slope length (m), vovv_{ov} is the overland flow velocity (m s1^{-1}) and 3600 is a unit conversion factor.

The overland flow velocity can be estimated from Manning’s equation by considering a strip 1 meter wide down the sloping surface:

vov=qov0.4slp0.3n0.6v_{ov}=\frac{q_{ov}^{0.4}*slp^{0.3}}{n^{0.6}} 2:1.3.4

where qovq_{ov} is the average overland flow rate (m3s1m^3 s^{-1}), slpslp is the average slope in the subbasin (m m1m^{-1}), and nn is Manning’s roughness coefficient for the subbasin. Assuming an average flow rate of 6.35 mm/hr and converting units

vov=0.005Lslp0.4slp0.3n0.6v_{ov}=\frac{0.005*L_{slp}^{0.4}*slp^{0.3}}{n^{0.6}} 2:1.3.5

Substituting equation 2:1.3.5 into equation 2:1.3.3 gives

tov=Lslp0.6n0.618slp0.3t_{ov}=\frac{L_{slp}^{0.6}*n^{0.6}}{18*slp^{0.3}} 2:1.3.6

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