Velocity while Running Full given Discharge Formula

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Velocity while Running Full refers to the speed of fluid flow in a pipe when it's completely filled, influenced by pipe slope and roughness. Check FAQs
V=QA
V - Velocity While Running Full?Q - Discharge when Pipe is Running Full?A - Area of Running Full Sewers?

Velocity while Running Full given Discharge Example

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With units
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Here is how the Velocity while Running Full given Discharge equation looks like with Values.

Here is how the Velocity while Running Full given Discharge equation looks like with Units.

Here is how the Velocity while Running Full given Discharge equation looks like.

6.0185Edit=32.5Edit5.4Edit
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Velocity while Running Full given Discharge Solution

Follow our step by step solution on how to calculate Velocity while Running Full given Discharge?

FIRST Step Consider the formula
V=QA
Next Step Substitute values of Variables
V=32.5m³/s5.4
Next Step Prepare to Evaluate
V=32.55.4
Next Step Evaluate
V=6.01851851851852m/s
LAST Step Rounding Answer
V=6.0185m/s

Velocity while Running Full given Discharge Formula Elements

Variables
Velocity While Running Full
Velocity while Running Full refers to the speed of fluid flow in a pipe when it's completely filled, influenced by pipe slope and roughness.
Symbol: V
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Discharge when Pipe is Running Full
Discharge when Pipe is Running Full means water is flowing through the whole cross-section of pipe.
Symbol: Q
Measurement: Volumetric Flow RateUnit: m³/s
Note: Value should be greater than 0.
Area of Running Full Sewers
The Area of Running Full Sewers refers to the total cross-sectional area of the pipe when it is completely filled with fluid.
Symbol: A
Measurement: AreaUnit:
Note: Value should be greater than 0.

Other formulas in Circular Sewer Section Running Full category

​Go Diameter of pipe given Area of Cross-section
Dpipe=(a(π4)((central360π180)-(sin(central)2π)))12
​Go Hydraulic Mean Depth using Central Angle
rpf=(Dpipe4)(1-((360π180)sin(central)2πcentral))
​Go Diameter of Pipe using Hydraulic Mean Depth
Dpipe=rpf(14)(1-((360π180)sin(central)2πcentral))
​Go Discharge when Pipe is Running Full
Q=VA

How to Evaluate Velocity while Running Full given Discharge?

Velocity while Running Full given Discharge evaluator uses Velocity While Running Full = Discharge when Pipe is Running Full/Area of Running Full Sewers to evaluate the Velocity While Running Full, The Velocity while Running Full given Discharge is defined as the speed of fluid moving through a fully filled pipe or channel, typically at maximum capacity. Velocity While Running Full is denoted by V symbol.

How to evaluate Velocity while Running Full given Discharge using this online evaluator? To use this online evaluator for Velocity while Running Full given Discharge, enter Discharge when Pipe is Running Full (Q) & Area of Running Full Sewers (A) and hit the calculate button.

FAQs on Velocity while Running Full given Discharge

What is the formula to find Velocity while Running Full given Discharge?
The formula of Velocity while Running Full given Discharge is expressed as Velocity While Running Full = Discharge when Pipe is Running Full/Area of Running Full Sewers. Here is an example- 9.740741 = 32.5/5.4.
How to calculate Velocity while Running Full given Discharge?
With Discharge when Pipe is Running Full (Q) & Area of Running Full Sewers (A) we can find Velocity while Running Full given Discharge using the formula - Velocity While Running Full = Discharge when Pipe is Running Full/Area of Running Full Sewers.
Can the Velocity while Running Full given Discharge be negative?
No, the Velocity while Running Full given Discharge, measured in Speed cannot be negative.
Which unit is used to measure Velocity while Running Full given Discharge?
Velocity while Running Full given Discharge is usually measured using the Meter per Second[m/s] for Speed. Meter per Minute[m/s], Meter per Hour[m/s], Kilometer per Hour[m/s] are the few other units in which Velocity while Running Full given Discharge can be measured.
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