Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability Solution

STEP 0: Pre-Calculation Summary
Formula Used
Kinematic Viscosity at 20° C = (Coefficient of Permeability at any Temperature t*Kinematic Viscosity at t° C)/Standard Coefficient of Permeability at 20°C
vs = (Kt*vt)/Ks
This formula uses 4 Variables
Variables Used
Kinematic Viscosity at 20° C - (Measured in Square Meter per Second) - Kinematic Viscosity at 20° C standard is a measure of a fluid's internal resistance to flow under gravitational forces.
Coefficient of Permeability at any Temperature t - (Measured in Meter per Second) - Coefficient of permeability at any temperature t of a soil describes how easily a liquid will move through a soil.
Kinematic Viscosity at t° C - (Measured in Square Meter per Second) - Kinematic Viscosity at t° C standard consideration.
Standard Coefficient of Permeability at 20°C - Standard Coefficient of Permeability at 20°C of pure water at standard temperature.
STEP 1: Convert Input(s) to Base Unit
Coefficient of Permeability at any Temperature t: 4.17 Centimeter per Second --> 0.0417 Meter per Second (Check conversion here)
Kinematic Viscosity at t° C: 24 Square Meter per Second --> 24 Square Meter per Second No Conversion Required
Standard Coefficient of Permeability at 20°C: 8.34 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
vs = (Kt*vt)/Ks --> (0.0417*24)/8.34
Evaluating ... ...
vs = 0.12
STEP 3: Convert Result to Output's Unit
0.12 Square Meter per Second --> No Conversion Required
FINAL ANSWER
0.12 Square Meter per Second <-- Kinematic Viscosity at 20° C
(Calculation completed in 00.004 seconds)

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21 Coefficient of Permeability Calculators

Hagen Poiseuille flow or mean particle size of porous medium laminar flow through conduit
Go Mean Particle Size of the Porous Medium = sqrt((Coefficient of Permeability (Hagen-Poiseuille)*Dynamic Viscosity of the Fluid)/(Shape Factor*(Unit Weight of Fluid/1000)))
Dynamic viscosity of fluid of laminar flow through conduit or Hagen Poiseuille flow
Go Dynamic Viscosity of the Fluid = (Shape Factor*Mean Particle Size of the Porous Medium^2)*((Unit Weight of Fluid/1000)/Coefficient of Permeability (Hagen-Poiseuille))
Coefficient of permeability from analogy of laminar flow (Hagen Poiseuille flow)
Go Coefficient of Permeability (Hagen-Poiseuille) = Shape Factor*(Mean Particle Size of the Porous Medium^2)*(Unit Weight of Fluid/1000)/Dynamic Viscosity of the Fluid
Coefficient of permeability at any temperature t for standard value of coefficient of permeability
Go Coefficient of Permeability at any Temperature t = (Standard Coefficient of Permeability at 20°C*Kinematic Viscosity at 20° C)/Kinematic Viscosity at t° C
Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability
Go Kinematic Viscosity at 20° C = (Coefficient of Permeability at any Temperature t*Kinematic Viscosity at t° C)/Standard Coefficient of Permeability at 20°C
Kinematic Viscosity for standard value of coefficient of permeability
Go Kinematic Viscosity at t° C = (Standard Coefficient of Permeability at 20°C*Kinematic Viscosity at 20° C)/Coefficient of Permeability at any Temperature t
Standard value of coefficient of permeability
Go Standard Coefficient of Permeability at 20°C = Coefficient of Permeability at any Temperature t*(Kinematic Viscosity at t° C/Kinematic Viscosity at 20° C)
Coefficient of permeability at temperature of permeameter experiment
Go Coefficient of Permeability at the temperature = (Discharge/Cross-Sectional Area)*(1/(Constant Head Difference/Length))
Cross sectional area when coefficient of permeability at permeameter experiment is considered
Go Cross-Sectional Area = Discharge/(Coefficient of Permeability at the temperature*(Constant Head Difference/Length))
Discharge when Coefficient of Permeability at Permeameter Experiment is Considered
Go Discharge = Coefficient of Permeability at the temperature*Cross-Sectional Area*(Constant Head Difference/Length)
Length when Coefficient of Permeability at Permeameter Experiment is Considered
Go Length = (Constant Head Difference*Cross-Sectional Area*Coefficient of Permeability at the temperature)/Discharge
Coefficient of Permeability when Specific or Intrinsic Permeability is Considered
Go Coefficient of Permeability at the temperature = Intrinsic Permeability*((Unit Weight of Fluid/1000)/Dynamic Viscosity of the Fluid)
Specific or Intrinsic Permeability when Coefficient of Permeability is Considered
Go Intrinsic Permeability = (Coefficient of Permeability at the temperature*Dynamic Viscosity of the Fluid)/(Unit Weight of Fluid/1000)
Specific or Intrinsic Permeability when Dynamic Viscosity is Considered
Go Intrinsic Permeability = (Coefficient of Permeability at the temperature*Dynamic Viscosity of the Fluid)/(Unit Weight of Fluid/1000)
Dynamic Viscosity when Specific or Intrinsic Permeability is Considered
Go Dynamic Viscosity of the Fluid = Intrinsic Permeability*((Unit Weight of Fluid/1000)/Coefficient of Permeability at the temperature)
Kinematic Viscosity when Specific or Intrinsic Permeability is Considered
Go Kinematic Viscosity = (Intrinsic Permeability*Acceleration due to Gravity)/Coefficient of Permeability
Equation for Specific or Intrinsic Permeability
Go Intrinsic Permeability = Shape Factor*Mean Particle Size of the Porous Medium^2
Kinematic Viscosity and Dynamic Viscosity Relation
Go Kinematic Viscosity = Dynamic Viscosity of the Fluid/Density of Fluid
Unit weight of fluid
Go Unit Weight of Fluid = Density of Fluid*Acceleration due to Gravity
Coefficient of Permeability when Transmissibility is Considered
Go Coefficient of Permeability = Transmissibility/Aquifer Thickness
Equivalent permeability when transmissivity of aquifer is considered
Go Equivalent Permeability = Transmissivity/Aquifer Thickness

Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability Formula

Kinematic Viscosity at 20° C = (Coefficient of Permeability at any Temperature t*Kinematic Viscosity at t° C)/Standard Coefficient of Permeability at 20°C
vs = (Kt*vt)/Ks

What is Coefficient of Permeability?

The Coefficient of Permeability of a soil describes how easily a liquid will move through a soil. It is also commonly referred to as the hydraulic conductivity of a soil. This factor can be affected by the viscosity, or thickness(fluidity) of a liquid and its density.

How to Calculate Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability?

Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability calculator uses Kinematic Viscosity at 20° C = (Coefficient of Permeability at any Temperature t*Kinematic Viscosity at t° C)/Standard Coefficient of Permeability at 20°C to calculate the Kinematic Viscosity at 20° C, Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability is defined as the measure of a fluid's internal resistance to flow under gravitational forces. Kinematic Viscosity at 20° C is denoted by vs symbol.

How to calculate Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability using this online calculator? To use this online calculator for Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability, enter Coefficient of Permeability at any Temperature t (Kt), Kinematic Viscosity at t° C (vt) & Standard Coefficient of Permeability at 20°C (Ks) and hit the calculate button. Here is how the Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability calculation can be explained with given input values -> 0.12 = (0.0417*24)/8.34.

FAQ

What is Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability?
Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability is defined as the measure of a fluid's internal resistance to flow under gravitational forces and is represented as vs = (Kt*vt)/Ks or Kinematic Viscosity at 20° C = (Coefficient of Permeability at any Temperature t*Kinematic Viscosity at t° C)/Standard Coefficient of Permeability at 20°C. Coefficient of permeability at any temperature t of a soil describes how easily a liquid will move through a soil, Kinematic Viscosity at t° C standard consideration & Standard Coefficient of Permeability at 20°C of pure water at standard temperature.
How to calculate Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability?
Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability is defined as the measure of a fluid's internal resistance to flow under gravitational forces is calculated using Kinematic Viscosity at 20° C = (Coefficient of Permeability at any Temperature t*Kinematic Viscosity at t° C)/Standard Coefficient of Permeability at 20°C. To calculate Kinematic Viscosity at 20 degree Celsius for standard value of coefficient of permeability, you need Coefficient of Permeability at any Temperature t (Kt), Kinematic Viscosity at t° C (vt) & Standard Coefficient of Permeability at 20°C (Ks). With our tool, you need to enter the respective value for Coefficient of Permeability at any Temperature t, Kinematic Viscosity at t° C & Standard Coefficient of Permeability at 20°C 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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