Static Velocity of Plate using Chord Length for Flat Plate Case Solution

STEP 0: Pre-Calculation Summary
Formula Used
Static Velocity = (Reynolds Number using Chord Length*Static Viscosity)/(Static Density*Chord Length)
ue = (Rec*μe)/(ρe*LChord)
This formula uses 5 Variables
Variables Used
Static Velocity - (Measured in Meter per Second) - The Static Velocity is the velocity of a fluid relative to a stationary observer, crucial for analyzing flow characteristics in hypersonic and viscous flow scenarios.
Reynolds Number using Chord Length - The Reynolds Number using Chord Length is a dimensionless quantity that helps predict flow patterns in fluid dynamics, particularly for hypersonic flow over flat plates.
Static Viscosity - (Measured in Pascal Second) - The Static Viscosity is a measure of a fluid's resistance to flow under constant temperature conditions, important for understanding fluid behavior in various applications.
Static Density - (Measured in Kilogram per Cubic Meter) - The Static Density is the mass per unit volume of a fluid at a specified reference temperature, crucial for understanding fluid behavior in hypersonic flow applications.
Chord Length - (Measured in Meter) - The Chord Length is the straight-line distance between two points on a curve, often used to analyze the shape and aerodynamic properties of objects in fluid dynamics.
STEP 1: Convert Input(s) to Base Unit
Reynolds Number using Chord Length: 2000 --> No Conversion Required
Static Viscosity: 11.2 Poise --> 1.12 Pascal Second (Check conversion ​here)
Static Density: 118 Kilogram per Cubic Meter --> 118 Kilogram per Cubic Meter No Conversion Required
Chord Length: 2.157165 Meter --> 2.157165 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
ue = (Rec*μe)/(ρe*LChord) --> (2000*1.12)/(118*2.157165)
Evaluating ... ...
ue = 8.79999946571432
STEP 3: Convert Result to Output's Unit
8.79999946571432 Meter per Second --> No Conversion Required
FINAL ANSWER
8.79999946571432 8.799999 Meter per Second <-- Static Velocity
(Calculation completed in 00.004 seconds)

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Reference Temperature Method Calculators

Static Velocity of Plate using Chord Length for Flat Plate Case
​ LaTeX ​ Go Static Velocity = (Reynolds Number using Chord Length*Static Viscosity)/(Static Density*Chord Length)
Static Density of Plate using Chord Length for Flat Plate Case
​ LaTeX ​ Go Static Density = (Reynolds Number using Chord Length*Static Viscosity)/(Static Velocity*Chord Length)
Reynolds Number for Chord Length
​ LaTeX ​ Go Reynolds Number using Chord Length = Static Density*Static Velocity*Chord Length/Static Viscosity
Local Reynolds Number
​ LaTeX ​ Go Local Reynolds Number = ((1.328)/Local Skin-Friction Coefficient)^2

Static Velocity of Plate using Chord Length for Flat Plate Case Formula

​LaTeX ​Go
Static Velocity = (Reynolds Number using Chord Length*Static Viscosity)/(Static Density*Chord Length)
ue = (Rec*μe)/(ρe*LChord)

What is a Reynolds Number?

The Reynolds number is the ratio of inertial forces to viscous forces within a fluid which is subjected to relative internal movement due to different fluid velocities

How to Calculate Static Velocity of Plate using Chord Length for Flat Plate Case?

Static Velocity of Plate using Chord Length for Flat Plate Case calculator uses Static Velocity = (Reynolds Number using Chord Length*Static Viscosity)/(Static Density*Chord Length) to calculate the Static Velocity, Static Velocity of Plate using Chord Length for Flat Plate Case formula is defined as a measure of the velocity of a flat plate in a viscous flow case, which is essential in understanding the fluid dynamics and aerodynamic characteristics of the plate. Static Velocity is denoted by ue symbol.

How to calculate Static Velocity of Plate using Chord Length for Flat Plate Case using this online calculator? To use this online calculator for Static Velocity of Plate using Chord Length for Flat Plate Case, enter Reynolds Number using Chord Length (Rec), Static Viscosity (μe), Static Density e) & Chord Length (LChord) and hit the calculate button. Here is how the Static Velocity of Plate using Chord Length for Flat Plate Case calculation can be explained with given input values -> 6.779661 = (2000*1.12)/(118*2.157165).

FAQ

What is Static Velocity of Plate using Chord Length for Flat Plate Case?
Static Velocity of Plate using Chord Length for Flat Plate Case formula is defined as a measure of the velocity of a flat plate in a viscous flow case, which is essential in understanding the fluid dynamics and aerodynamic characteristics of the plate and is represented as ue = (Rec*μe)/(ρe*LChord) or Static Velocity = (Reynolds Number using Chord Length*Static Viscosity)/(Static Density*Chord Length). The Reynolds Number using Chord Length is a dimensionless quantity that helps predict flow patterns in fluid dynamics, particularly for hypersonic flow over flat plates, The Static Viscosity is a measure of a fluid's resistance to flow under constant temperature conditions, important for understanding fluid behavior in various applications, The Static Density is the mass per unit volume of a fluid at a specified reference temperature, crucial for understanding fluid behavior in hypersonic flow applications & The Chord Length is the straight-line distance between two points on a curve, often used to analyze the shape and aerodynamic properties of objects in fluid dynamics.
How to calculate Static Velocity of Plate using Chord Length for Flat Plate Case?
Static Velocity of Plate using Chord Length for Flat Plate Case formula is defined as a measure of the velocity of a flat plate in a viscous flow case, which is essential in understanding the fluid dynamics and aerodynamic characteristics of the plate is calculated using Static Velocity = (Reynolds Number using Chord Length*Static Viscosity)/(Static Density*Chord Length). To calculate Static Velocity of Plate using Chord Length for Flat Plate Case, you need Reynolds Number using Chord Length (Rec), Static Viscosity (μe), Static Density e) & Chord Length (LChord). With our tool, you need to enter the respective value for Reynolds Number using Chord Length, Static Viscosity, Static Density & Chord Length 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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