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The Dynamic Viscosity of the Fluid is referred as measure of its resistance to flow when an external force is applied. Check FAQs
μ=(Cdm2)(γ1000KH-P)
μ - Dynamic Viscosity of the Fluid?C - Shape Factor?dm - Mean Particle Size of the Porous Medium?γ - Unit Weight of Fluid?KH-P - Coefficient of Permeability (Hagen-Poiseuille)?

Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow Example

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With units
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Here is how the Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow equation looks like with Values.

Here is how the Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow equation looks like with Units.

Here is how the Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow equation looks like.

1.6011Edit=(1.8Edit0.02Edit2)(9.807Edit10000.441Edit)
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Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow Solution

Follow our step by step solution on how to calculate Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow?

FIRST Step Consider the formula
μ=(Cdm2)(γ1000KH-P)
Next Step Substitute values of Variables
μ=(1.80.02m2)(9.807kN/m³10000.441cm/s)
Next Step Convert Units
μ=(1.80.02m2)(9807N/m³10000.0044m/s)
Next Step Prepare to Evaluate
μ=(1.80.022)(980710000.0044)
Next Step Evaluate
μ=1.60114285714286Pa*s
LAST Step Rounding Answer
μ=1.6011Pa*s

Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow Formula Elements

Variables
Dynamic Viscosity of the Fluid
The Dynamic Viscosity of the Fluid is referred as measure of its resistance to flow when an external force is applied.
Symbol: μ
Measurement: Dynamic ViscosityUnit: Pa*s
Note: Value should be greater than 0.
Shape Factor
The Shape Factor is referred as the measure which depends on the porosity, packing, shape of grains and grain-size distribution of the porous medium.
Symbol: C
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Mean Particle Size of the Porous Medium
The Mean Particle Size of the Porous Medium is referred as dimensions of solid particles.
Symbol: dm
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Unit Weight of Fluid
The Unit Weight of Fluid is referred as weight per unit volume of a material/fluid.
Symbol: γ
Measurement: Specific WeightUnit: kN/m³
Note: Value should be greater than 0.
Coefficient of Permeability (Hagen-Poiseuille)
Coefficient of Permeability (Hagen-Poiseuille) also designated as hydraulic conductivity reflects the combined effect of porous medium and fluid properties.
Symbol: KH-P
Measurement: SpeedUnit: cm/s
Note: Value can be positive or negative.

Other Formulas to find Dynamic Viscosity of the Fluid

​Go Dynamic Viscosity when Specific or Intrinsic Permeability is Considered
μ=Ko(γ1000K)

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 Kinematic Viscosity and Dynamic Viscosity Relation
ν=μρfluid

How to Evaluate Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow?

Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow evaluator uses 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)) to evaluate the Dynamic Viscosity of the Fluid, The Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow formula is defined as the laminar flow that occurs in layers without mixing and the viscosity causes drag between layers as well as with the fixed surface. Dynamic Viscosity of the Fluid is denoted by μ symbol.

How to evaluate Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow using this online evaluator? To use this online evaluator for Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow, enter Shape Factor (C), Mean Particle Size of the Porous Medium (dm), Unit Weight of Fluid (γ) & Coefficient of Permeability (Hagen-Poiseuille) (KH-P) and hit the calculate button.

FAQs on Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow

What is the formula to find Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow?
The formula of Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow is expressed as 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)). Here is an example- 1.601143 = (1.8*0.02^2)*((9807/1000)/0.00441).
How to calculate Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow?
With Shape Factor (C), Mean Particle Size of the Porous Medium (dm), Unit Weight of Fluid (γ) & Coefficient of Permeability (Hagen-Poiseuille) (KH-P) we can find Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow using the formula - 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)).
What are the other ways to Calculate Dynamic Viscosity of the Fluid?
Here are the different ways to Calculate Dynamic Viscosity of the Fluid-
  • Dynamic Viscosity of the Fluid=Intrinsic Permeability*((Unit Weight of Fluid/1000)/Coefficient of Permeability at 20° C)OpenImg
Can the Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow be negative?
No, the Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow, measured in Dynamic Viscosity cannot be negative.
Which unit is used to measure Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow?
Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow is usually measured using the Pascal Second[Pa*s] for Dynamic Viscosity. Newton Second per Square Meter[Pa*s], Millinewton Second per Square Meter[Pa*s], Dyne Second per Square Centimeter[Pa*s] are the few other units in which Dynamic Viscosity of Fluid of Laminar Flow through Conduit or Hagen Poiseuille Flow can be measured.
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