Free stream velocity of flat plate laminar flow given drag coefficient Solution

STEP 0: Pre-Calculation Summary
Formula Used
Free Stream Velocity = (2*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Drag Coefficient
u = (2*kL*(Sc^0.67))/CD
This formula uses 4 Variables
Variables Used
Free Stream Velocity - (Measured in Meter per Second) - Free Stream Velocity is the velocity of a fluid that is far away from any obstacle or boundary, unaffected by the presence of the object.
Convective Mass Transfer Coefficient - (Measured in Meter per Second) - Convective Mass Transfer Coefficient is the rate of mass transfer between a surface and a moving fluid in a laminar flow regime.
Schmidt Number - Schmidt Number is a dimensionless number used to characterize fluid flows, particularly in laminar flow, to describe the ratio of momentum diffusivity to mass diffusivity.
Drag Coefficient - Drag Coefficient is a dimensionless quantity used to quantify the drag or resistance of an object in a fluid, typically air or water, in laminar flow conditions.
STEP 1: Convert Input(s) to Base Unit
Convective Mass Transfer Coefficient: 4E-05 Meter per Second --> 4E-05 Meter per Second No Conversion Required
Schmidt Number: 12 --> No Conversion Required
Drag Coefficient: 0.000911 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
u = (2*kL*(Sc^0.67))/CD --> (2*4E-05*(12^0.67))/0.000911
Evaluating ... ...
u = 0.464112264239792
STEP 3: Convert Result to Output's Unit
0.464112264239792 Meter per Second --> No Conversion Required
FINAL ANSWER
0.464112264239792 0.464112 Meter per Second <-- Free Stream Velocity
(Calculation completed in 00.004 seconds)

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​ LaTeX ​ Go Average Sherwood Number = 0.664*(Reynolds Number^0.5)*(Schmidt Number^0.333)
Drag coefficient of flat plate laminar flow
​ LaTeX ​ Go Drag Coefficient = 0.644/(Reynolds Number^0.5)

Free stream velocity of flat plate laminar flow given drag coefficient Formula

​LaTeX ​Go
Free Stream Velocity = (2*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Drag Coefficient
u = (2*kL*(Sc^0.67))/CD

What is Convective Mass Transfer?

Convective mass transfer is the process of transporting mass (such as a gas or dissolved substance) from one location to another through the combined effects of fluid motion and diffusion. It occurs when a fluid, like air or water, moves over a surface, carrying particles away or bringing them to the surface. The rate of convective mass transfer depends on factors such as fluid velocity, temperature, concentration gradients, and the properties of the fluid. It's important in processes like drying, evaporation, and chemical reactions in fluid systems.

How to Calculate Free stream velocity of flat plate laminar flow given drag coefficient?

Free stream velocity of flat plate laminar flow given drag coefficient calculator uses Free Stream Velocity = (2*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Drag Coefficient to calculate the Free Stream Velocity, Free stream velocity of flat plate laminar flow given drag coefficient formula is defined as a measure of the velocity of the fluid flow above a flat plate in a laminar flow regime, which is influenced by the drag coefficient and other physical properties of the system. Free Stream Velocity is denoted by u symbol.

How to calculate Free stream velocity of flat plate laminar flow given drag coefficient using this online calculator? To use this online calculator for Free stream velocity of flat plate laminar flow given drag coefficient, enter Convective Mass Transfer Coefficient (kL), Schmidt Number (Sc) & Drag Coefficient (CD) and hit the calculate button. Here is how the Free stream velocity of flat plate laminar flow given drag coefficient calculation can be explained with given input values -> 0.464112 = (2*4E-05*(12^0.67))/0.000911.

FAQ

What is Free stream velocity of flat plate laminar flow given drag coefficient?
Free stream velocity of flat plate laminar flow given drag coefficient formula is defined as a measure of the velocity of the fluid flow above a flat plate in a laminar flow regime, which is influenced by the drag coefficient and other physical properties of the system and is represented as u = (2*kL*(Sc^0.67))/CD or Free Stream Velocity = (2*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Drag Coefficient. Convective Mass Transfer Coefficient is the rate of mass transfer between a surface and a moving fluid in a laminar flow regime, Schmidt Number is a dimensionless number used to characterize fluid flows, particularly in laminar flow, to describe the ratio of momentum diffusivity to mass diffusivity & Drag Coefficient is a dimensionless quantity used to quantify the drag or resistance of an object in a fluid, typically air or water, in laminar flow conditions.
How to calculate Free stream velocity of flat plate laminar flow given drag coefficient?
Free stream velocity of flat plate laminar flow given drag coefficient formula is defined as a measure of the velocity of the fluid flow above a flat plate in a laminar flow regime, which is influenced by the drag coefficient and other physical properties of the system is calculated using Free Stream Velocity = (2*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Drag Coefficient. To calculate Free stream velocity of flat plate laminar flow given drag coefficient, you need Convective Mass Transfer Coefficient (kL), Schmidt Number (Sc) & Drag Coefficient (CD). With our tool, you need to enter the respective value for Convective Mass Transfer Coefficient, Schmidt Number & Drag Coefficient and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Free Stream Velocity?
In this formula, Free Stream Velocity uses Convective Mass Transfer Coefficient, Schmidt Number & Drag Coefficient. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Free Stream Velocity = (Convective Mass Transfer Coefficient*(Schmidt Number^0.67)*(Reynolds Number^0.5))/(0.322)
  • Free Stream Velocity = (8*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Friction Factor
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