Actual Discharge from Backwater Effect on Rating Curve Normalized Curve Formula

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Actual discharge is given by the actual area and velocity. Check FAQs
Qa=Q0(FFo)m
Qa - Actual Discharge?Q0 - Normalized Discharge?F - Actual Fall?Fo - Normalized Value of Fall?m - Exponent on Rating Curve?

Actual Discharge from Backwater Effect on Rating Curve Normalized Curve Example

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Here is how the Actual Discharge from Backwater Effect on Rating Curve Normalized Curve equation looks like with Values.

Here is how the Actual Discharge from Backwater Effect on Rating Curve Normalized Curve equation looks like with Units.

Here is how the Actual Discharge from Backwater Effect on Rating Curve Normalized Curve equation looks like.

9.001Edit=7Edit(2.5Edit1.512Edit)0.5Edit
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Actual Discharge from Backwater Effect on Rating Curve Normalized Curve Solution

Follow our step by step solution on how to calculate Actual Discharge from Backwater Effect on Rating Curve Normalized Curve?

FIRST Step Consider the formula
Qa=Q0(FFo)m
Next Step Substitute values of Variables
Qa=7m³/s(2.5m1.512m)0.5
Next Step Prepare to Evaluate
Qa=7(2.51.512)0.5
Next Step Evaluate
Qa=9.00102874778869m³/s
LAST Step Rounding Answer
Qa=9.001m³/s

Actual Discharge from Backwater Effect on Rating Curve Normalized Curve Formula Elements

Variables
Actual Discharge
Actual discharge is given by the actual area and velocity.
Symbol: Qa
Measurement: Volumetric Flow RateUnit: m³/s
Note: Value should be greater than 0.
Normalized Discharge
Normalized Discharge at the given stage when the fall is equal to normalized value of the fall taken to be constant at all stages.
Symbol: Q0
Measurement: Volumetric Flow RateUnit: m³/s
Note: Value should be greater than 0.
Actual Fall
Actual Fall at a given stage to that of the actual discharge.
Symbol: F
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Normalized Value of Fall
Normalized Value of Fall to be constant at all stages.
Symbol: Fo
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Exponent on Rating Curve
Exponent on rating curve with a value close to 0.5, Rating curve is a graph of discharge versus stage for given point on stream, usually at gauging stations.
Symbol: m
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other formulas in Stage Discharge Relationship category

​Go Normalized Discharge of Backwater Effect on Rating Curve Normalized Curve
Q0=Qa(FoF)m
​Go Actual Fall at Stage given Actual Discharge
F=Fo(QaQ0)1m
​Go Normalized Value of Fall given Discharge
Fo=F(Q0Qa)1m
​Go Relationship between Stage and Discharge for Non-Alluvial Rivers
Qs=Cr(G-a)β

How to Evaluate Actual Discharge from Backwater Effect on Rating Curve Normalized Curve?

Actual Discharge from Backwater Effect on Rating Curve Normalized Curve evaluator uses Actual Discharge = Normalized Discharge*(Actual Fall/Normalized Value of Fall)^Exponent on Rating Curve to evaluate the Actual Discharge, The Actual Discharge from Backwater Effect on Rating Curve Normalized Curve formula is defined as the volumetric flow rate of water that is transported through a given cross-sectional area in the backwater profile. Actual Discharge is denoted by Qa symbol.

How to evaluate Actual Discharge from Backwater Effect on Rating Curve Normalized Curve using this online evaluator? To use this online evaluator for Actual Discharge from Backwater Effect on Rating Curve Normalized Curve, enter Normalized Discharge (Q0), Actual Fall (F), Normalized Value of Fall (Fo) & Exponent on Rating Curve (m) and hit the calculate button.

FAQs on Actual Discharge from Backwater Effect on Rating Curve Normalized Curve

What is the formula to find Actual Discharge from Backwater Effect on Rating Curve Normalized Curve?
The formula of Actual Discharge from Backwater Effect on Rating Curve Normalized Curve is expressed as Actual Discharge = Normalized Discharge*(Actual Fall/Normalized Value of Fall)^Exponent on Rating Curve. Here is an example- 9.036961 = 7*(2.5/1.512)^0.5.
How to calculate Actual Discharge from Backwater Effect on Rating Curve Normalized Curve?
With Normalized Discharge (Q0), Actual Fall (F), Normalized Value of Fall (Fo) & Exponent on Rating Curve (m) we can find Actual Discharge from Backwater Effect on Rating Curve Normalized Curve using the formula - Actual Discharge = Normalized Discharge*(Actual Fall/Normalized Value of Fall)^Exponent on Rating Curve.
Can the Actual Discharge from Backwater Effect on Rating Curve Normalized Curve be negative?
No, the Actual Discharge from Backwater Effect on Rating Curve Normalized Curve, measured in Volumetric Flow Rate cannot be negative.
Which unit is used to measure Actual Discharge from Backwater Effect on Rating Curve Normalized Curve?
Actual Discharge from Backwater Effect on Rating Curve Normalized Curve is usually measured using the Cubic Meter per Second[m³/s] for Volumetric Flow Rate. Cubic Meter per Day[m³/s], Cubic Meter per Hour[m³/s], Cubic Meter per Minute[m³/s] are the few other units in which Actual Discharge from Backwater Effect on Rating Curve Normalized Curve can be measured.
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