Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula Formula

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Bed Slope of Channel refers to the gradient or incline of a channel's bed, influencing the velocity and direction of water flow, typically measured as a ratio or percentage. Check FAQs
s=(Vcb83.5(m)23)2
s - Bed Slope of Channel?Vcb - Flow Velocity for Crimp and Burge's Formula?m - Hydraulic Mean Depth?

Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula Example

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Here is how the Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula equation looks like with Values.

Here is how the Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula equation looks like with Units.

Here is how the Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula equation looks like.

0.001Edit=(12.25Edit83.5(10Edit)23)2
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Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula Solution

Follow our step by step solution on how to calculate Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula?

FIRST Step Consider the formula
s=(Vcb83.5(m)23)2
Next Step Substitute values of Variables
s=(12.25m/s83.5(10m)23)2
Next Step Prepare to Evaluate
s=(12.2583.5(10)23)2
Next Step Evaluate
s=0.000999000931326355
LAST Step Rounding Answer
s=0.001

Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula Formula Elements

Variables
Bed Slope of Channel
Bed Slope of Channel refers to the gradient or incline of a channel's bed, influencing the velocity and direction of water flow, typically measured as a ratio or percentage.
Symbol: s
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Flow Velocity for Crimp and Burge's Formula
Flow Velocity for Crimp and Burge's Formula refers to the speed of water flow in an open channel, calculated using the Chezy constant and hydraulic slope.
Symbol: Vcb
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Hydraulic Mean Depth
The Hydraulic Mean Depth refers to the cross-sectional area of flow divided by the wetted perimeter, used to analyze fluid flow in channels.
Symbol: m
Measurement: LengthUnit: m
Note: Value can be positive or negative.

Other formulas in Crimp and Burge's Formula category

​Go Flow Velocity by Crimp and Burge's Formula
Vcb=83.5(m)23s
​Go Hydraulic Mean Depth given Flow Velocity by Crimp and Burge's Formula
m=(Vcbs83.5)32

How to Evaluate Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula?

Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula evaluator uses Bed Slope of Channel = (Flow Velocity for Crimp and Burge's Formula/(83.5*(Hydraulic Mean Depth)^(2/3)))^2 to evaluate the Bed Slope of Channel, The Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula is defined as the gradient or incline of a channel's bed, influencing the velocity and direction of water flow, typically measured as a ratio or percentage. Bed Slope of Channel is denoted by s symbol.

How to evaluate Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula using this online evaluator? To use this online evaluator for Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula, enter Flow Velocity for Crimp and Burge's Formula (Vcb) & Hydraulic Mean Depth (m) and hit the calculate button.

FAQs on Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula

What is the formula to find Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula?
The formula of Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula is expressed as Bed Slope of Channel = (Flow Velocity for Crimp and Burge's Formula/(83.5*(Hydraulic Mean Depth)^(2/3)))^2. Here is an example- 0.000999 = (12.25/(83.5*(10)^(2/3)))^2.
How to calculate Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula?
With Flow Velocity for Crimp and Burge's Formula (Vcb) & Hydraulic Mean Depth (m) we can find Bed Slope of Sewer given Flow Velocity by Crimp and Burge's Formula using the formula - Bed Slope of Channel = (Flow Velocity for Crimp and Burge's Formula/(83.5*(Hydraulic Mean Depth)^(2/3)))^2.
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