Quantity of Seepage in Length of Dam under Consideration Solution

STEP 0: Pre-Calculation Summary
Formula Used
Quantity of Seepage = (Coefficient of Permeability of Soil*Number of Beds*Loss of Head*Length of Dam)/Equipotential Lines
Q = (k*B*HL*L)/N
This formula uses 6 Variables
Variables Used
Quantity of Seepage - (Measured in Cubic Meter per Second) - Quantity of Seepage is the movement of water in soils or the ground.
Coefficient of Permeability of Soil - (Measured in Meter per Second) - The Coefficient of Permeability of Soil describes how easily a liquid will move through the soil.
Number of Beds - The Number of Beds is defined as the number of beds between each of the same potential drops.
Loss of Head - (Measured in Meter) - The Loss of head due to sudden enlargement turbulent eddies are formed at the corner of the enlargement of the pipe section.
Length of Dam - (Measured in Meter) - Length of Dam is the measurement or extent of something from end to end.
Equipotential Lines - Equipotential Lines is defined as the number of lines with same potential drop.
STEP 1: Convert Input(s) to Base Unit
Coefficient of Permeability of Soil: 10 Centimeter per Second --> 0.1 Meter per Second (Check conversion ​here)
Number of Beds: 2 --> No Conversion Required
Loss of Head: 6.6 Meter --> 6.6 Meter No Conversion Required
Length of Dam: 3 Meter --> 3 Meter No Conversion Required
Equipotential Lines: 4 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Q = (k*B*HL*L)/N --> (0.1*2*6.6*3)/4
Evaluating ... ...
Q = 0.99
STEP 3: Convert Result to Output's Unit
0.99 Cubic Meter per Second --> No Conversion Required
FINAL ANSWER
0.99 Cubic Meter per Second <-- Quantity of Seepage
(Calculation completed in 00.004 seconds)

Credits

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Created by Rithik Agrawal
National Institute of Technology Karnataka (NITK), Surathkal
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Quantity of seepage Calculators

Head difference between Headwater and Tail Water given Quantity of Seepage in Length of Dam
​ LaTeX ​ Go Loss of Head = (Quantity of Seepage*Equipotential Lines)/(Number of Beds*Coefficient of Permeability of Soil*Length of Dam)
Length of Dam to which Flow Net applies given Quantity of Seepage in Length of Dam
​ LaTeX ​ Go Length of Dam = (Quantity of Seepage*Equipotential Lines)/(Number of Beds*Loss of Head*Coefficient of Permeability of Soil)
Quantity of Seepage in Length of Dam under Consideration
​ LaTeX ​ Go Quantity of Seepage = (Coefficient of Permeability of Soil*Number of Beds*Loss of Head*Length of Dam)/Equipotential Lines
Seepage Discharge in Earth Dam
​ LaTeX ​ Go Seepage Discharge = Coefficient of Permeability of Soil*Hydraulic Gradient to Head Loss*Cross-Sectional Area of Base*Time Taken to Travel

Quantity of Seepage in Length of Dam under Consideration Formula

​LaTeX ​Go
Quantity of Seepage = (Coefficient of Permeability of Soil*Number of Beds*Loss of Head*Length of Dam)/Equipotential Lines
Q = (k*B*HL*L)/N

What is Darcy Law?

Darcy's law is an equation that describes the flow of a fluid through a porous medium. The law was formulated by Henry Darcy based on results of experiments .

How to Calculate Quantity of Seepage in Length of Dam under Consideration?

Quantity of Seepage in Length of Dam under Consideration calculator uses Quantity of Seepage = (Coefficient of Permeability of Soil*Number of Beds*Loss of Head*Length of Dam)/Equipotential Lines to calculate the Quantity of Seepage, Quantity of Seepage in Length of Dam under Consideration formula refers to the amount of water that passes through or leaks from a dam. It is measured in terms of the length of the dam under consideration, indicating the distance over which seepage occurs. Quantity of Seepage is denoted by Q symbol.

How to calculate Quantity of Seepage in Length of Dam under Consideration using this online calculator? To use this online calculator for Quantity of Seepage in Length of Dam under Consideration, enter Coefficient of Permeability of Soil (k), Number of Beds (B), Loss of Head (HL), Length of Dam (L) & Equipotential Lines (N) and hit the calculate button. Here is how the Quantity of Seepage in Length of Dam under Consideration calculation can be explained with given input values -> 0.99 = (0.1*2*6.6*3)/4.

FAQ

What is Quantity of Seepage in Length of Dam under Consideration?
Quantity of Seepage in Length of Dam under Consideration formula refers to the amount of water that passes through or leaks from a dam. It is measured in terms of the length of the dam under consideration, indicating the distance over which seepage occurs and is represented as Q = (k*B*HL*L)/N or Quantity of Seepage = (Coefficient of Permeability of Soil*Number of Beds*Loss of Head*Length of Dam)/Equipotential Lines. The Coefficient of Permeability of Soil describes how easily a liquid will move through the soil, The Number of Beds is defined as the number of beds between each of the same potential drops, The Loss of head due to sudden enlargement turbulent eddies are formed at the corner of the enlargement of the pipe section, Length of Dam is the measurement or extent of something from end to end & Equipotential Lines is defined as the number of lines with same potential drop.
How to calculate Quantity of Seepage in Length of Dam under Consideration?
Quantity of Seepage in Length of Dam under Consideration formula refers to the amount of water that passes through or leaks from a dam. It is measured in terms of the length of the dam under consideration, indicating the distance over which seepage occurs is calculated using Quantity of Seepage = (Coefficient of Permeability of Soil*Number of Beds*Loss of Head*Length of Dam)/Equipotential Lines. To calculate Quantity of Seepage in Length of Dam under Consideration, you need Coefficient of Permeability of Soil (k), Number of Beds (B), Loss of Head (HL), Length of Dam (L) & Equipotential Lines (N). With our tool, you need to enter the respective value for Coefficient of Permeability of Soil, Number of Beds, Loss of Head, Length of Dam & Equipotential Lines and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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