The Reynolds number can be calculated using the following equation: pDv Re 4Q Q is the volumetric flow rate of fluid. p and p are the density and viscosity of the luid consequently. D is the diameter of the pipe. Write a MATLAB function to calculate the Reynolds number for a given fluid type and a volumetric flowrate in a feasible range. Fluid p (kg/m') Water 1000 0.0015 Ethyl Alcohol 800 0.0018 Methyl Alcohol 760 0.0023 The feasibility of the volumetric flowrate (Q) should be checked with the constraint of 0.05 s Q s 0.5 A plot of the Re as a function of number Diameter of the pipe between 0.01 and 0.1 m. • Display the Re number for the end value of the D using "fprintf" function. • Check your function carefully, it should consider the infeasible fluid selection,

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QUESTION 4
The Reynolds number can be calculated using the following equation:
pDv
Re
4Q
Q is the volumetric flow rate of fluid. p and p are the density and viscosity of the
fluid consequently. D is the diameter of the pipe.
Write a MATLAB function to calculate the Reynolds number for a given fluid
type and a volumetric flowrate in a feasible range.
Fluid
p (kg/m')
Water
1000
0.0015
Ethyl Alcohol
800
0.0018
Methyl Alcohol
760
0.0023
The feasibility of the volumetric flowrate (Q) should be checked with the
constraint of 0.05 s Q s 0.5
A plot of the Re as a function of number Diameter of the pipe between 0.01 and
0.1 m.
Display the Re number for the end value of the D using "fprintf" function.
Check your function carefully, it should consider the infeasible fluid selection,
Transcribed Image Text:QUESTION 4 The Reynolds number can be calculated using the following equation: pDv Re 4Q Q is the volumetric flow rate of fluid. p and p are the density and viscosity of the fluid consequently. D is the diameter of the pipe. Write a MATLAB function to calculate the Reynolds number for a given fluid type and a volumetric flowrate in a feasible range. Fluid p (kg/m') Water 1000 0.0015 Ethyl Alcohol 800 0.0018 Methyl Alcohol 760 0.0023 The feasibility of the volumetric flowrate (Q) should be checked with the constraint of 0.05 s Q s 0.5 A plot of the Re as a function of number Diameter of the pipe between 0.01 and 0.1 m. Display the Re number for the end value of the D using "fprintf" function. Check your function carefully, it should consider the infeasible fluid selection,
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