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Rainfall-Runoff Modeling Watershed Rainfall Runoff Rainfall-Runoff Model Rainfall Runoff

Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

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Page 1: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Rainfall-Runoff Modeling

WatershedRainfall Runoff

Rainfall-RunoffModel

Rainfall Runoff

Page 2: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Modeling Considerations

• Development of a rainfall-runoff model depends on

(1) Time scale

(2) Basin scale

For larger time scale (month, year, or longer)

Runoff = f(Rainfall); VQ = g(VRain)

For shorter time scale (eg. Storm events)

Runoff Hydrograph = f( Rainfall Hyetograph)

Q(t) = f [ I(1), I(2), …, I(t) ]

Page 3: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Rational Formula• First proposed by Kuichling in 1889

• Qp = k C i A

where k = unit conversion factor,

1.008 for English unit; 0.278 for metric unit

Qp = peak discharge (ft3/s or m3/s);

i = rainfall intensity (in/hr or mm/hr)

A = drainage area (acres or km2)

• Note: i = average intensity of rainfall corresponding to the

duration of time-to-concentration.

Page 4: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Time-of-Concentration• Definition:

• It is an elusive hydrologic variable and it is very difficult to measure.

Page 5: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Time-of-Concentration Methods (1)

Page 6: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Time-of-Concentration Methods (2)

Page 7: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Time-of-Concentration Methods (3)

Page 8: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Comparison of Time-of-Concentration Models

Page 9: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Time-Area Method• Can be considered as an extension of the rational method

in which rainfall intensity in not uniform over the storm duration

Page 10: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Time-Area Method (Eg. 1)

Page 11: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Time-Area Method (Eg. 2)

Page 12: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Time-Area Method (Eg. 3)

Page 13: Rainfall-Runoff Rainfall-Runoff Modeling Watershed RainfallRunoff Rainfall-Runoff Model RainfallRunoff

Time-Area Method (Eg. 4)