Storm Runoff Volume given Sediment Yield from Individual Storm Formula

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Runoff Volume is the average amount of water that flows down a particular river, per year, expressed as a volume of water flowing past a given point. Check FAQs
QV=(Y11.8KKztCP)10.56qp
QV - Runoff Volume?Y - Sediment Yield from an Individual Storm?K - Soil Erodibility Factor?Kzt - Topographic factor?C - Cover Management Factor?P - Support Practice Factor?qp - Peak Rate of Runoff?

Storm Runoff Volume given Sediment Yield from Individual Storm Example

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Here is how the Storm Runoff Volume given Sediment Yield from Individual Storm equation looks like with Values.

Here is how the Storm Runoff Volume given Sediment Yield from Individual Storm equation looks like with Units.

Here is how the Storm Runoff Volume given Sediment Yield from Individual Storm equation looks like.

19.5Edit=(135.7332Edit11.80.17Edit25Edit0.61Edit0.74Edit)10.561.256Edit
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Storm Runoff Volume given Sediment Yield from Individual Storm Solution

Follow our step by step solution on how to calculate Storm Runoff Volume given Sediment Yield from Individual Storm?

FIRST Step Consider the formula
QV=(Y11.8KKztCP)10.56qp
Next Step Substitute values of Variables
QV=(135.7332kg11.80.17250.610.74)10.561.256m³/s
Next Step Prepare to Evaluate
QV=(135.733211.80.17250.610.74)10.561.256
Next Step Evaluate
QV=19.5000012401795
LAST Step Rounding Answer
QV=19.5

Storm Runoff Volume given Sediment Yield from Individual Storm Formula Elements

Variables
Runoff Volume
Runoff Volume is the average amount of water that flows down a particular river, per year, expressed as a volume of water flowing past a given point.
Symbol: QV
Measurement: VolumeUnit:
Note: Value should be greater than 0.
Sediment Yield from an Individual Storm
Sediment Yield from an Individual Storm is the amount of sediment leaving the watershed or catchment, and gross erosion is defined as the absolute amount of erosion occurring within the catchment.
Symbol: Y
Measurement: WeightUnit: kg
Note: Value can be positive or negative.
Soil Erodibility Factor
Soil Erodibility Factor is the intrinsic susceptibility of a soil to erosion by runoff and raindrop impact.
Symbol: K
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Topographic factor
Topographic Factor also called indirect factors as they influence the growth and development of organisms by bringing variations in climatic factors.
Symbol: Kzt
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Cover Management Factor
Cover Management Factor reflects the effect of cropping and management practices on erosion rates.
Symbol: C
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Support Practice Factor
Support Practice Factor is the ratio of soil loss with a support practice like strip cropping to that with a straight row farming up and down the slope.
Symbol: P
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Peak Rate of Runoff
Peak Rate of Runoff is the maximum rate of discharge during the period of runoff caused by a storm.
Symbol: qp
Measurement: Volumetric Flow RateUnit: m³/s
Note: Value should be greater than 0.

Other formulas in Modified Universal Soil Loss Equation category

​Go Sediment Yield from Individual Storm
Y=11.8((QVqp)0.56)KKztCP
​Go Peak Rate of Runoff given Sediment Yield from Individual Storm
qp=(Y11.8KKztCP)10.56QV

How to Evaluate Storm Runoff Volume given Sediment Yield from Individual Storm?

Storm Runoff Volume given Sediment Yield from Individual Storm evaluator uses Runoff Volume = ((Sediment Yield from an Individual Storm/(11.8*Soil Erodibility Factor*Topographic factor*Cover Management Factor*Support Practice Factor))^(1/0.56))/Peak Rate of Runoff to evaluate the Runoff Volume, The Storm Runoff Volume given Sediment Yield from Individual Storm formula is defined as the volume of water that runs off a land development project from a prescribed storm event. Runoff Volume is denoted by QV symbol.

How to evaluate Storm Runoff Volume given Sediment Yield from Individual Storm using this online evaluator? To use this online evaluator for Storm Runoff Volume given Sediment Yield from Individual Storm, enter Sediment Yield from an Individual Storm (Y), Soil Erodibility Factor (K), Topographic factor (Kzt), Cover Management Factor (C), Support Practice Factor (P) & Peak Rate of Runoff (qp) and hit the calculate button.

FAQs on Storm Runoff Volume given Sediment Yield from Individual Storm

What is the formula to find Storm Runoff Volume given Sediment Yield from Individual Storm?
The formula of Storm Runoff Volume given Sediment Yield from Individual Storm is expressed as Runoff Volume = ((Sediment Yield from an Individual Storm/(11.8*Soil Erodibility Factor*Topographic factor*Cover Management Factor*Support Practice Factor))^(1/0.56))/Peak Rate of Runoff. Here is an example- 15 = ((135.7332/(11.8*0.17*25*0.61*0.74))^(1/0.56))/1.256.
How to calculate Storm Runoff Volume given Sediment Yield from Individual Storm?
With Sediment Yield from an Individual Storm (Y), Soil Erodibility Factor (K), Topographic factor (Kzt), Cover Management Factor (C), Support Practice Factor (P) & Peak Rate of Runoff (qp) we can find Storm Runoff Volume given Sediment Yield from Individual Storm using the formula - Runoff Volume = ((Sediment Yield from an Individual Storm/(11.8*Soil Erodibility Factor*Topographic factor*Cover Management Factor*Support Practice Factor))^(1/0.56))/Peak Rate of Runoff.
Can the Storm Runoff Volume given Sediment Yield from Individual Storm be negative?
No, the Storm Runoff Volume given Sediment Yield from Individual Storm, measured in Volume cannot be negative.
Which unit is used to measure Storm Runoff Volume given Sediment Yield from Individual Storm?
Storm Runoff Volume given Sediment Yield from Individual Storm is usually measured using the Cubic Meter[m³] for Volume. Cubic Centimeter[m³], Cubic Millimeter[m³], Liter[m³] are the few other units in which Storm Runoff Volume given Sediment Yield from Individual Storm can be measured.
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