Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force Formula

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Kinematic viscosity for model analysis is a measure of a fluid's internal resistance to flow under gravitational forces. Check FAQs
ν=FvVfLFi
ν - Kinematic Viscosity for Model Analysis?Fv - Viscous Force?Vf - Velocity of Fluid?L - Characteristic length?Fi - Inertia Forces?

Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force Example

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Here is how the Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force equation looks like with Values.

Here is how the Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force equation looks like with Units.

Here is how the Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force equation looks like.

0.8317Edit=0.0504Edit20Edit3Edit3.636Edit
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Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force Solution

Follow our step by step solution on how to calculate Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force?

FIRST Step Consider the formula
ν=FvVfLFi
Next Step Substitute values of Variables
ν=0.0504kN20m/s3m3.636kN
Next Step Convert Units
ν=50.4N20m/s3m3636N
Next Step Prepare to Evaluate
ν=50.42033636
Next Step Evaluate
ν=0.831683168316832m²/s
LAST Step Rounding Answer
ν=0.8317m²/s

Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force Formula Elements

Variables
Kinematic Viscosity for Model Analysis
Kinematic viscosity for model analysis is a measure of a fluid's internal resistance to flow under gravitational forces.
Symbol: ν
Measurement: Kinematic ViscosityUnit: m²/s
Note: Value can be positive or negative.
Viscous Force
Viscous Force is force due to viscosity.
Symbol: Fv
Measurement: ForceUnit: kN
Note: Value can be positive or negative.
Velocity of Fluid
Velocity of Fluid is the vector field that is used to describe fluid motion in a mathematical manner.
Symbol: Vf
Measurement: SpeedUnit: m/s
Note: Value can be positive or negative.
Characteristic length
Characteristic length is the linear dimension expressed in physical model relationships between prototype and model.
Symbol: L
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Inertia Forces
Inertia Forces are the forces that keep fluid moving against viscous [ viscosity] forces.
Symbol: Fi
Measurement: ForceUnit: kN
Note: Value should be greater than 0.

Other formulas in Relation between Forces on the Prototype and Forces on the Model category

​Go Force on Prototype
Fp=αFFm
​Go Scale Factor for Inertia Forces given Force on Prototype
αF=FpFm
​Go Force on Model given Force on Prototype
Fm=FpαF
​Go Relation between Forces on Prototype and Forces on Model
Fp=αρ(αV2)(αL2)Fm

How to Evaluate Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force?

Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force evaluator uses Kinematic Viscosity for Model Analysis = (Viscous Force*Velocity of Fluid*Characteristic length)/Inertia Forces to evaluate the Kinematic Viscosity for Model Analysis, The Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force can be expressed using Newton’s friction model while while the inertia forces (from above) are proportional to the respective parameters. Kinematic Viscosity for Model Analysis is denoted by ν symbol.

How to evaluate Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force using this online evaluator? To use this online evaluator for Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force, enter Viscous Force (Fv), Velocity of Fluid (Vf), Characteristic length (L) & Inertia Forces (Fi) and hit the calculate button.

FAQs on Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force

What is the formula to find Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force?
The formula of Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force is expressed as Kinematic Viscosity for Model Analysis = (Viscous Force*Velocity of Fluid*Characteristic length)/Inertia Forces. Here is an example- 0.831683 = (50.4*20*3)/3636.
How to calculate Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force?
With Viscous Force (Fv), Velocity of Fluid (Vf), Characteristic length (L) & Inertia Forces (Fi) we can find Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force using the formula - Kinematic Viscosity for Model Analysis = (Viscous Force*Velocity of Fluid*Characteristic length)/Inertia Forces.
Can the Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force be negative?
Yes, the Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force, measured in Kinematic Viscosity can be negative.
Which unit is used to measure Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force?
Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force is usually measured using the Square Meter per Second[m²/s] for Kinematic Viscosity. Square Meter per Hour[m²/s], Square Centimeter per Second[m²/s], Square Millimeter per Second[m²/s] are the few other units in which Kinematic Viscosity for Ratio of Inertial Forces and Viscous Force can be measured.
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