Free stream velocity of flat plate in internal turbulent flow Solution

STEP 0: Pre-Calculation Summary
Formula Used
Free Stream Velocity = (8*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Friction Factor
u = (8*kL*(Sc^0.67))/f
This formula uses 4 Variables
Variables Used
Free Stream Velocity - (Measured in Meter per Second) - Free Stream Velocity is the velocity of the fluid flow that is unaffected by the presence of an object or obstacle in turbulent flow.
Convective Mass Transfer Coefficient - (Measured in Meter per Second) - Convective Mass Transfer Coefficient is the rate of mass transfer between a surface and a turbulent fluid flow, influenced by flow velocity and concentration gradients.
Schmidt Number - Schmidt Number is a dimensionless value that characterizes the turbulent flow in fluids, representing the ratio of momentum diffusivity to mass diffusivity.
Friction Factor - Friction Factor is a dimensionless quantity used to quantify the frictional force exerted by a fluid on a pipe's inner surface during turbulent flow.
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: 1.2042 --> No Conversion Required
Friction Factor: 0.63 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
u = (8*kL*(Sc^0.67))/f --> (8*4E-05*(1.2042^0.67))/0.63
Evaluating ... ...
u = 0.000575277655996727
STEP 3: Convert Result to Output's Unit
0.000575277655996727 Meter per Second --> No Conversion Required
FINAL ANSWER
0.000575277655996727 0.000575 Meter per Second <-- Free Stream Velocity
(Calculation completed in 00.006 seconds)

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Shri Madhwa Vadiraja Institute of Technology and Management (SMVITM), Udupi
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Turbulent Flow Calculators

Free stream velocity of flat plate in internal turbulent flow
​ LaTeX ​ Go Free Stream Velocity = (8*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Friction Factor
Local Sherwood Number for Flat Plate in Turbulent Flow
​ LaTeX ​ Go Local Sherwood Number = 0.0296*(Local Reynolds Number^0.8)*(Schmidt Number^0.333)
Average Sherwood Number of Internal Turbulent Flow
​ LaTeX ​ Go Average Sherwood Number = 0.023*(Reynolds Number^0.83)*(Schmidt Number^0.44)
Average Sherwood Number of Flat Plate Turbulent Flow
​ LaTeX ​ Go Average Sherwood Number = 0.037*(Reynolds Number^0.8)

Free stream velocity of flat plate in internal turbulent flow Formula

​LaTeX ​Go
Free Stream Velocity = (8*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Friction Factor
u = (8*kL*(Sc^0.67))/f

What is convective mass transfer?

Mass transfer by convection involves the transport of material between a boundary surface (such as solid or liquid surface) and a moving fluid or between two relatively immiscible, moving fluids.
In forced convection type the fluid moves under the influence of an external force (pressure difference)as in the case of transfer of liquids by pumps and gases by compressors.
Natural convection currents develop if there is any variation in density within the fluid phase. The density variation may be due to temperature differences or to relatively large concentration differences.

How to Calculate Free stream velocity of flat plate in internal turbulent flow?

Free stream velocity of flat plate in internal turbulent flow calculator uses Free Stream Velocity = (8*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Friction Factor to calculate the Free Stream Velocity, Free stream velocity of flat plate in internal turbulent flow formula is defined as the velocity of the fluid approaching the flat plate in a turbulent flow regime, which is a critical parameter in convective mass transfer processes, particularly in industrial applications such as heat exchangers and chemical reactors. Free Stream Velocity is denoted by u symbol.

How to calculate Free stream velocity of flat plate in internal turbulent flow using this online calculator? To use this online calculator for Free stream velocity of flat plate in internal turbulent flow, enter Convective Mass Transfer Coefficient (kL), Schmidt Number (Sc) & Friction Factor (f) and hit the calculate button. Here is how the Free stream velocity of flat plate in internal turbulent flow calculation can be explained with given input values -> 0.000575 = (8*4E-05*(1.2042^0.67))/0.63.

FAQ

What is Free stream velocity of flat plate in internal turbulent flow?
Free stream velocity of flat plate in internal turbulent flow formula is defined as the velocity of the fluid approaching the flat plate in a turbulent flow regime, which is a critical parameter in convective mass transfer processes, particularly in industrial applications such as heat exchangers and chemical reactors and is represented as u = (8*kL*(Sc^0.67))/f or Free Stream Velocity = (8*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Friction Factor. Convective Mass Transfer Coefficient is the rate of mass transfer between a surface and a turbulent fluid flow, influenced by flow velocity and concentration gradients, Schmidt Number is a dimensionless value that characterizes the turbulent flow in fluids, representing the ratio of momentum diffusivity to mass diffusivity & Friction Factor is a dimensionless quantity used to quantify the frictional force exerted by a fluid on a pipe's inner surface during turbulent flow.
How to calculate Free stream velocity of flat plate in internal turbulent flow?
Free stream velocity of flat plate in internal turbulent flow formula is defined as the velocity of the fluid approaching the flat plate in a turbulent flow regime, which is a critical parameter in convective mass transfer processes, particularly in industrial applications such as heat exchangers and chemical reactors is calculated using Free Stream Velocity = (8*Convective Mass Transfer Coefficient*(Schmidt Number^0.67))/Friction Factor. To calculate Free stream velocity of flat plate in internal turbulent flow, you need Convective Mass Transfer Coefficient (kL), Schmidt Number (Sc) & Friction Factor (f). With our tool, you need to enter the respective value for Convective Mass Transfer Coefficient, Schmidt Number & Friction Factor 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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