Discharge when Coefficient of Permeability at Permeameter Experiment is Considered Formula

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The Discharge referred as volumetric flow rate of water that is transported through a given cross-sectional area. It includes any suspended solids, dissolved chemicals, or biologic material. Check FAQs
Q=KA(ΔHL)
Q - Discharge?K - Coefficient of Permeability at 20° C?A - Cross-Sectional Area?ΔH - Constant Head Difference?L - Length?

Discharge when Coefficient of Permeability at Permeameter Experiment is Considered Example

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Here is how the Discharge when Coefficient of Permeability at Permeameter Experiment is Considered equation looks like with Values.

Here is how the Discharge when Coefficient of Permeability at Permeameter Experiment is Considered equation looks like with Units.

Here is how the Discharge when Coefficient of Permeability at Permeameter Experiment is Considered equation looks like.

3.0769Edit=6Edit100Edit(2Edit3.9Edit)
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Discharge when Coefficient of Permeability at Permeameter Experiment is Considered Solution

Follow our step by step solution on how to calculate Discharge when Coefficient of Permeability at Permeameter Experiment is Considered?

FIRST Step Consider the formula
Q=KA(ΔHL)
Next Step Substitute values of Variables
Q=6cm/s100(23.9m)
Next Step Convert Units
Q=0.06m/s100(23.9m)
Next Step Prepare to Evaluate
Q=0.06100(23.9)
Next Step Evaluate
Q=3.07692307692308m³/s
LAST Step Rounding Answer
Q=3.0769m³/s

Discharge when Coefficient of Permeability at Permeameter Experiment is Considered Formula Elements

Variables
Discharge
The Discharge referred as 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: Q
Measurement: Volumetric Flow RateUnit: m³/s
Note: Value should be greater than 0.
Coefficient of Permeability at 20° C
The Coefficient of Permeability at 20° C refers to the measure of a porous medium’s ability to allow fluid flow through its voids.
Symbol: K
Measurement: SpeedUnit: cm/s
Note: Value should be greater than 0.
Cross-Sectional Area
The Cross-Sectional Area is referred as product of width multiplied by average water depth.
Symbol: A
Measurement: AreaUnit:
Note: Value should be greater than 0.
Constant Head Difference
The Constant Head Difference is referred as difference between the hydraulic head or pressure difference separated by a small distance dl.
Symbol: ΔH
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Length
The Length referred as measurement or extent of something from end to end.
Symbol: L
Measurement: LengthUnit: m
Note: Value should be greater than 0.

Other formulas in Coefficient of Permeability category

​Go Coefficient of Permeability from Analogy of Laminar Flow (Hagen Poiseuille flow)
KH-P=C(dm2)γ1000μ
​Go Hagen Poiseuille Flow or Mean Particle Size of Porous Medium Laminar Flow through Conduit
dm=KH-PμC(γ1000)
​Go Unit weight of fluid
γ=ρfluidg
​Go Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow
μ=(Cdm2)(γ1000KH-P)

How to Evaluate Discharge when Coefficient of Permeability at Permeameter Experiment is Considered?

Discharge when Coefficient of Permeability at Permeameter Experiment is Considered evaluator uses Discharge = Coefficient of Permeability at 20° C*Cross-Sectional Area*(Constant Head Difference/Length) to evaluate the Discharge, The Discharge when Coefficient of Permeability at Permeameter Experiment is Considered is defined as the volumetric flow rate of water that is transported through a given cross-sectional area. Discharge is denoted by Q symbol.

How to evaluate Discharge when Coefficient of Permeability at Permeameter Experiment is Considered using this online evaluator? To use this online evaluator for Discharge when Coefficient of Permeability at Permeameter Experiment is Considered, enter Coefficient of Permeability at 20° C (K), Cross-Sectional Area (A), Constant Head Difference (ΔH) & Length (L) and hit the calculate button.

FAQs on Discharge when Coefficient of Permeability at Permeameter Experiment is Considered

What is the formula to find Discharge when Coefficient of Permeability at Permeameter Experiment is Considered?
The formula of Discharge when Coefficient of Permeability at Permeameter Experiment is Considered is expressed as Discharge = Coefficient of Permeability at 20° C*Cross-Sectional Area*(Constant Head Difference/Length). Here is an example- 3.076923 = 0.06*100*(2/3.9).
How to calculate Discharge when Coefficient of Permeability at Permeameter Experiment is Considered?
With Coefficient of Permeability at 20° C (K), Cross-Sectional Area (A), Constant Head Difference (ΔH) & Length (L) we can find Discharge when Coefficient of Permeability at Permeameter Experiment is Considered using the formula - Discharge = Coefficient of Permeability at 20° C*Cross-Sectional Area*(Constant Head Difference/Length).
Can the Discharge when Coefficient of Permeability at Permeameter Experiment is Considered be negative?
No, the Discharge when Coefficient of Permeability at Permeameter Experiment is Considered, measured in Volumetric Flow Rate cannot be negative.
Which unit is used to measure Discharge when Coefficient of Permeability at Permeameter Experiment is Considered?
Discharge when Coefficient of Permeability at Permeameter Experiment is Considered is usually measured using the Cubic Meter per Second[m³/s] for Volumetric Flow Rate. Cubic Meter per Day[m³/s], Cubic Meter per Hour[m³/s], Cubic Meter per Minute[m³/s] are the few other units in which Discharge when Coefficient of Permeability at Permeameter Experiment is Considered can be measured.
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