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Specific Gravity of Sediment is the ratio of sediment particle density to the density of water, indicating its heaviness. Check FAQs
G=(sLI(km)d')+1
G - Specific Gravity of Sediment?sLI - Self Cleaning Invert Slope?k - Dimensional Constant?m - Hydraulic Mean Depth?d' - Diameter of Particle?

Specific Gravity of Sediment given Self Cleaning Invert Slope Example

With values
With units
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Here is how the Specific Gravity of Sediment given Self Cleaning Invert Slope equation looks like with Values.

Here is how the Specific Gravity of Sediment given Self Cleaning Invert Slope equation looks like with Units.

Here is how the Specific Gravity of Sediment given Self Cleaning Invert Slope equation looks like.

1.3Edit=(5.8E-6Edit(0.04Edit10Edit)4.8Edit)+1
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Specific Gravity of Sediment given Self Cleaning Invert Slope Solution

Follow our step by step solution on how to calculate Specific Gravity of Sediment given Self Cleaning Invert Slope?

FIRST Step Consider the formula
G=(sLI(km)d')+1
Next Step Substitute values of Variables
G=(5.8E-6(0.0410m)4.8mm)+1
Next Step Convert Units
G=(5.8E-6(0.0410m)0.0048m)+1
Next Step Prepare to Evaluate
G=(5.8E-6(0.0410)0.0048)+1
LAST Step Evaluate
G=1.3

Specific Gravity of Sediment given Self Cleaning Invert Slope Formula Elements

Variables
Specific Gravity of Sediment
Specific Gravity of Sediment is the ratio of sediment particle density to the density of water, indicating its heaviness.
Symbol: G
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Self Cleaning Invert Slope
The Self Cleaning Invert Slope refers to the minimum slope required in a sewer to maintain flow velocity that prevents sediment buildup.
Symbol: sLI
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Dimensional Constant
Dimensional Constant indicates important characteristics of sediments present in the sewage. Its value usually varies from 0.04 (start of scouring of clean grit) to 0.08 (full removal of sticky grit).
Symbol: k
Measurement: NAUnit: Unitless
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.
Diameter of Particle
The Diameter of Particle is the straight-line distance across its widest point, typically measured in micrometers or millimeters.
Symbol: d'
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other Formulas to find Specific Gravity of Sediment

​Go Specific Gravity of Sediment given Drag Force
G=(FDγw(1-n)tsin(αi))+1
​Go Specific Gravity of Sediment given Self Cleansing Velocity
G=((vsC)2d'k)+1
​Go Specific Gravity of Sediment given Friction Factor
G=((vs)28[g]kd'f')+1
​Go Specific Gravity of Sediment given Self Cleansing Velocity and Rugosity Coefficient
G=(1kd')(vsn(m)16)2+1

How to Evaluate Specific Gravity of Sediment given Self Cleaning Invert Slope?

Specific Gravity of Sediment given Self Cleaning Invert Slope evaluator uses Specific Gravity of Sediment = (Self Cleaning Invert Slope/((Dimensional Constant/Hydraulic Mean Depth)*Diameter of Particle))+1 to evaluate the Specific Gravity of Sediment, The Specific Gravity of Sediment given Self Cleaning Invert Slope is the ratio of sediment particle density to the density of water, indicating its heaviness. Specific Gravity of Sediment is denoted by G symbol.

How to evaluate Specific Gravity of Sediment given Self Cleaning Invert Slope using this online evaluator? To use this online evaluator for Specific Gravity of Sediment given Self Cleaning Invert Slope, enter Self Cleaning Invert Slope (sLI), Dimensional Constant (k), Hydraulic Mean Depth (m) & Diameter of Particle (d') and hit the calculate button.

FAQs on Specific Gravity of Sediment given Self Cleaning Invert Slope

What is the formula to find Specific Gravity of Sediment given Self Cleaning Invert Slope?
The formula of Specific Gravity of Sediment given Self Cleaning Invert Slope is expressed as Specific Gravity of Sediment = (Self Cleaning Invert Slope/((Dimensional Constant/Hydraulic Mean Depth)*Diameter of Particle))+1. Here is an example- 78126 = (self_cleaning_invert_slope/((0.04/10)*0.0048))+1.
How to calculate Specific Gravity of Sediment given Self Cleaning Invert Slope?
With Self Cleaning Invert Slope (sLI), Dimensional Constant (k), Hydraulic Mean Depth (m) & Diameter of Particle (d') we can find Specific Gravity of Sediment given Self Cleaning Invert Slope using the formula - Specific Gravity of Sediment = (Self Cleaning Invert Slope/((Dimensional Constant/Hydraulic Mean Depth)*Diameter of Particle))+1.
What are the other ways to Calculate Specific Gravity of Sediment?
Here are the different ways to Calculate Specific Gravity of Sediment-
  • Specific Gravity of Sediment=(Drag Force/(Unit Weight of Fluid*(1-Rugosity Coefficient)*Volume per Unit Area*sin(Angle of Inclination of Plane to Horizontal)))+1OpenImg
  • Specific Gravity of Sediment=((Self Cleansing Velocity/Chezy's Constant)^2/(Diameter of Particle*Dimensional Constant))+1OpenImg
  • Specific Gravity of Sediment=((Self Cleansing Velocity)^2/((8*[g]*Dimensional Constant*Diameter of Particle)/Friction Factor))+1OpenImg
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