Average Sherwood Number of Flat Plate Turbulent Flow Solution

STEP 0: Pre-Calculation Summary
Formula Used
Average Sherwood Number = 0.037*(Reynolds Number^0.8)
Nsh = 0.037*(Re^0.8)
This formula uses 2 Variables
Variables Used
Average Sherwood Number - Average Sherwood Number is a dimensionless number used to characterize the convective mass transport in turbulent flow, particularly in chemical and process engineering applications.
Reynolds Number - Reynolds Number is a dimensionless value that predicts the nature of fluid flow, whether it is laminar or turbulent, in a pipe or around an object.
STEP 1: Convert Input(s) to Base Unit
Reynolds Number: 500000 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Nsh = 0.037*(Re^0.8) --> 0.037*(500000^0.8)
Evaluating ... ...
Nsh = 1340.84237780374
STEP 3: Convert Result to Output's Unit
1340.84237780374 --> No Conversion Required
FINAL ANSWER
1340.84237780374 1340.842 <-- Average Sherwood Number
(Calculation completed in 00.004 seconds)

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Shri Madhwa Vadiraja Institute of Technology and Management (SMVITM), Udupi
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Mass Transfer Coefficient Calculators

Convective Mass Transfer Coefficient of Flat Plate Laminar Flow using Drag Coefficient
​ LaTeX ​ Go Convective Mass Transfer Coefficient = (Drag Coefficient*Free Stream Velocity)/(2*(Schmidt Number^0.67))
Average Sherwood Number of Combined Laminar and Turbulent Flow
​ LaTeX ​ Go Average Sherwood Number = ((0.037*(Reynolds Number^0.8))-871)*(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)

Important Formulas in Mass Transfer Coefficient, Driving Force and Theories Calculators

Convective Mass Transfer Coefficient
​ LaTeX ​ Go Convective Mass Transfer Coefficient = Mass Flux of Diffusion Component A/(Mass Concentration of Component A in Mixture 1-Mass Concentration of Component A in Mixture 2)
Average Sherwood Number of Combined Laminar and Turbulent Flow
​ LaTeX ​ Go Average Sherwood Number = ((0.037*(Reynolds Number^0.8))-871)*(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)

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)

Average Sherwood Number of Flat Plate Turbulent Flow Formula

​LaTeX ​Go
Average Sherwood Number = 0.037*(Reynolds Number^0.8)
Nsh = 0.037*(Re^0.8)

What is Sherwood Number?

The Sherwood number (Sh) (also called the mass transfer Nusselt number) is a dimensionless number used in mass-transfer operation. The mass transport problem is solved both analytically and numerically under the assumption of instantaneous adsorption upon the liquid-solid interface. The velocity components within the liquid phase are obtained either by using the analytical formulations of the sphere-in-cell model or by solving numerically the creeping flow problem in a stochastically constructed packing of spheres.

How to Calculate Average Sherwood Number of Flat Plate Turbulent Flow?

Average Sherwood Number of Flat Plate Turbulent Flow calculator uses Average Sherwood Number = 0.037*(Reynolds Number^0.8) to calculate the Average Sherwood Number, Average Sherwood Number of Flat Plate Turbulent Flow formula is defined as a dimensionless number used to characterize the convective mass transfer between a flat plate and a turbulent fluid flow, providing a measure of the mass transfer rate under such conditions. Average Sherwood Number is denoted by Nsh symbol.

How to calculate Average Sherwood Number of Flat Plate Turbulent Flow using this online calculator? To use this online calculator for Average Sherwood Number of Flat Plate Turbulent Flow, enter Reynolds Number (Re) and hit the calculate button. Here is how the Average Sherwood Number of Flat Plate Turbulent Flow calculation can be explained with given input values -> 1340.842 = 0.037*(500000^0.8).

FAQ

What is Average Sherwood Number of Flat Plate Turbulent Flow?
Average Sherwood Number of Flat Plate Turbulent Flow formula is defined as a dimensionless number used to characterize the convective mass transfer between a flat plate and a turbulent fluid flow, providing a measure of the mass transfer rate under such conditions and is represented as Nsh = 0.037*(Re^0.8) or Average Sherwood Number = 0.037*(Reynolds Number^0.8). Reynolds Number is a dimensionless value that predicts the nature of fluid flow, whether it is laminar or turbulent, in a pipe or around an object.
How to calculate Average Sherwood Number of Flat Plate Turbulent Flow?
Average Sherwood Number of Flat Plate Turbulent Flow formula is defined as a dimensionless number used to characterize the convective mass transfer between a flat plate and a turbulent fluid flow, providing a measure of the mass transfer rate under such conditions is calculated using Average Sherwood Number = 0.037*(Reynolds Number^0.8). To calculate Average Sherwood Number of Flat Plate Turbulent Flow, you need Reynolds Number (Re). With our tool, you need to enter the respective value for Reynolds Number 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 Average Sherwood Number?
In this formula, Average Sherwood Number uses Reynolds Number. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Average Sherwood Number = 0.023*(Reynolds Number^0.83)*(Schmidt Number^0.44)
  • Average Sherwood Number = 0.023*(Reynolds Number^0.83)*(Schmidt Number^0.44)
  • Average Sherwood Number = 0.023*(Reynolds Number^0.83)*(Schmidt Number^0.44)
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