Fx Copy
LaTeX Copy
The Coefficient of Permeability of Soil describes how easily a liquid will move through the soil. Check FAQs
k=QtiAcst
k - Coefficient of Permeability of Soil?Qt - Discharge from Dam?i - Hydraulic Gradient to Head Loss?Acs - Cross-Sectional Area of Base?t - Time Taken to Travel?

Coefficient of Permeability Given Seepage Discharge in Earth Dam Example

With values
With units
Only example

Here is how the Coefficient of Permeability Given Seepage Discharge in Earth Dam equation looks like with Values.

Here is how the Coefficient of Permeability Given Seepage Discharge in Earth Dam equation looks like with Units.

Here is how the Coefficient of Permeability Given Seepage Discharge in Earth Dam equation looks like.

0.292Edit=0.46Edit2.02Edit13Edit6Edit
You are here -
HomeIcon Home » Category Engineering » Category Civil » Category Hydraulics and Waterworks » fx Coefficient of Permeability Given Seepage Discharge in Earth Dam

Coefficient of Permeability Given Seepage Discharge in Earth Dam Solution

Follow our step by step solution on how to calculate Coefficient of Permeability Given Seepage Discharge in Earth Dam?

FIRST Step Consider the formula
k=QtiAcst
Next Step Substitute values of Variables
k=0.46m³/s2.02136s
Next Step Prepare to Evaluate
k=0.462.02136
Next Step Evaluate
k=0.00291952272150292m/s
Next Step Convert to Output's Unit
k=0.291952272150292cm/s
LAST Step Rounding Answer
k=0.292cm/s

Coefficient of Permeability Given Seepage Discharge in Earth Dam Formula Elements

Variables
Coefficient of Permeability of Soil
The Coefficient of Permeability of Soil describes how easily a liquid will move through the soil.
Symbol: k
Measurement: SpeedUnit: cm/s
Note: Value should be greater than 0.
Discharge from Dam
Discharge from Dam is the volumetric flow rate of water that is transported through a given cross-sectional area. It includes any suspended solids, dissolved chemicals, or biologic material.
Symbol: Qt
Measurement: Volumetric Flow RateUnit: m³/s
Note: Value can be positive or negative.
Hydraulic Gradient to Head Loss
Hydraulic Gradient to Head Loss is a specific measurement of liquid pressure above a vertical datum.
Symbol: i
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Cross-Sectional Area of Base
Cross-Sectional Area of Base is the area of a two-dimensional shape that is obtained when a three-dimensional shape is sliced perpendicular to some specified axis at a point.
Symbol: Acs
Measurement: AreaUnit:
Note: Value should be greater than 0.
Time Taken to Travel
Time Taken to Travel is the total time taken by an object to reach its destination.
Symbol: t
Measurement: TimeUnit: s
Note: Value can be positive or negative.

Other Formulas to find Coefficient of Permeability of Soil

​Go Coefficient of Permeability given Quantity of Seepage in Length of Dam
k=QtNBHLL
​Go Coefficient of Permeability given Maximum and Minimum Permeability for Earth Dam
k=Koμr

Other formulas in Coefficient of permiability of earth dam category

​Go Maximum Permeability given Coefficient of Permeability for Earth Dam
Ko=k2μr
​Go Minimum Permeability given Coefficient of Permeability for Earth Dam
μr=k2Ko

How to Evaluate Coefficient of Permeability Given Seepage Discharge in Earth Dam?

Coefficient of Permeability Given Seepage Discharge in Earth Dam evaluator uses Coefficient of Permeability of Soil = Discharge from Dam/(Hydraulic Gradient to Head Loss*Cross-Sectional Area of Base*Time Taken to Travel) to evaluate the Coefficient of Permeability of Soil, The Coefficient of Permeability Given Seepage Discharge in Earth Dam is a measure of the ease with which water can flow through the dam's material. It is determined by the seepage discharge, which refers to the quantity of water that permeates through the dam over a given period of time. Coefficient of Permeability of Soil is denoted by k symbol.

How to evaluate Coefficient of Permeability Given Seepage Discharge in Earth Dam using this online evaluator? To use this online evaluator for Coefficient of Permeability Given Seepage Discharge in Earth Dam, enter Discharge from Dam (Qt), Hydraulic Gradient to Head Loss (i), Cross-Sectional Area of Base (Acs) & Time Taken to Travel (t) and hit the calculate button.

FAQs on Coefficient of Permeability Given Seepage Discharge in Earth Dam

What is the formula to find Coefficient of Permeability Given Seepage Discharge in Earth Dam?
The formula of Coefficient of Permeability Given Seepage Discharge in Earth Dam is expressed as Coefficient of Permeability of Soil = Discharge from Dam/(Hydraulic Gradient to Head Loss*Cross-Sectional Area of Base*Time Taken to Travel). Here is an example- 64.10256 = 0.46/(2.02*13*6).
How to calculate Coefficient of Permeability Given Seepage Discharge in Earth Dam?
With Discharge from Dam (Qt), Hydraulic Gradient to Head Loss (i), Cross-Sectional Area of Base (Acs) & Time Taken to Travel (t) we can find Coefficient of Permeability Given Seepage Discharge in Earth Dam using the formula - Coefficient of Permeability of Soil = Discharge from Dam/(Hydraulic Gradient to Head Loss*Cross-Sectional Area of Base*Time Taken to Travel).
What are the other ways to Calculate Coefficient of Permeability of Soil?
Here are the different ways to Calculate Coefficient of Permeability of Soil-
  • Coefficient of Permeability of Soil=(Discharge from Dam*Equipotential Lines)/(Number of Beds*Loss of Head*Length of Dam)OpenImg
  • Coefficient of Permeability of Soil=sqrt(Intrinsic Permeability*Relative Permeability)OpenImg
Can the Coefficient of Permeability Given Seepage Discharge in Earth Dam be negative?
No, the Coefficient of Permeability Given Seepage Discharge in Earth Dam, measured in Speed cannot be negative.
Which unit is used to measure Coefficient of Permeability Given Seepage Discharge in Earth Dam?
Coefficient of Permeability Given Seepage Discharge in Earth Dam is usually measured using the Centimeter per Second[cm/s] for Speed. Meter per Second[cm/s], Meter per Minute[cm/s], Meter per Hour[cm/s] are the few other units in which Coefficient of Permeability Given Seepage Discharge in Earth Dam can be measured.
Copied!