XFoil Reynolds Number Calculations

AI Thread Summary
XFoil calculates the Reynolds Number using freestream velocity and viscosity, with an implied unit chord length. For validation against experimental data, the user is confused about whether to input a Reynolds Number based on actual conditions or sea level values. It is clarified that XFoil assumes a unit chord length, meaning the user should multiply the unit Reynolds Number by the actual chord length for accurate comparisons. The discussion emphasizes the importance of maintaining the Reynolds Number for proper scaling in simulations. Ultimately, the focus is on ensuring that the Reynolds Number remains consistent for accurate results in XFoil.
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Can someone explain to me how XFoil calculates the Reynolds Number for computational analysis. I have the XFoil manual which explains the method used in calculating the Reynolds Number. But what I don't understand is that it says that the "Reynolds Number is defined with the freestream velocity and viscosity, and an implied unit chord.

My experimental data are,

Re,chord = 380,000
V = 16.67 m/s
T = 293 K
P = 101325 Pa
Viscosity = 1.813 e-5 kg/ms
Density = 1.205 kg/m3

above values are extracted from an experiment, where I'm intending to use XFoil for the validation of experimental data. According to the Reynolds Number equation mentioned below where,

Re = (V x density x chord) / viscosity

if the implied chord is taken as a unit, then the Reynolds number I should enter in XFoil should be 1107872 (not 380,000), approximately. Having said that, when it say freestream velocity and viscosity, does it mean I should use the velocity as 16.67 m/s (which is the correct speed of the wind tunnel during the experiment) and the sea level viscosity which is 1.78 e-5 (not 1.813 e-5, which is the correct density at the wind tunnel during the experiment).

Since the force coefficients (CL, CD, CM) are calculated (in XFoil) by normalizing the forces with ONLY the freestream dynamic pressure, which is given in below equation,

q = 0.5 x density x V2

CL = L / q
CD = D / q
Cm = M / q

where the only input parameter options available in XFoil are Reynolds Number and the Mach Number. Hence I believe that velocity in the dynamic pressure equation above is calculated from the Reynold number equation and the other parameters such as viscosity and density are taken as sea level conditions (not the experimental values). Therefore the Reynolds number has to be adjusted by using sea level values. Is this is correct ??
 
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Free stream velocity and viscosity are the wind tunnel conditions in the free stream, not average sea level values.

When XFoil assumes a unit chord length, that means it is essentially outputting the unit Reynolds number. Just multiply it by your actual chord length to compare with your wind tunnel results.
 
Just to confirm, my wind tunnel experimental Reynolds number is 380,000. So when I specify the Reynolds number in XFoil using the "Re" command, do I need to enter it as 1107872 (Reynolds number based on a UNIT chord) which will be 380,000 when multiplied by 0.343m (actual chord length).

Or...

multiply 380,000 (Reynolds number during the experiment) by 0.343m, which would give 130,340 as the Reynolds number.

The input (airfoil section used for the analysis) airfoil co-ordinate file has an unit chord (x/c = 1), not 0.343m as well.
 
I have confused myself here actually. Reynolds number is not something that should be played with. Just leave the Reynolds number the same in both cases so that it properly scales. Sorry about that. I have been thinking bass ackwards today.

You are essentially simulating the wing in XFoil at 1m chord length and comparing to a scaled-down test in the tunnel. The correct way to do that is by matching Reynolds number.
 
So I know that electrons are fundamental, there's no 'material' that makes them up, it's like talking about a colour itself rather than a car or a flower. Now protons and neutrons and quarks and whatever other stuff is there fundamentally, I want someone to kind of teach me these, I have a lot of questions that books might not give the answer in the way I understand. Thanks
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