Why Wind Tunnel Models Work: Dimensional Analysis of Aerodynamic Drag

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About this lecture

A small model in a wind tunnel is eight times smaller than the aircraft it stands for, and yet the number it hands you is the number you want. This lecture explains why, by listing every quantity that could set the drag on a body in a flow, counting the independent dimensions among them, and letting the Reynolds number and the drag coefficient fall out as the only two groups that can matter. Both are built by hand, exponent by exponent, with no equation of motion solved anywhere. Two experiments at wildly different sizes, speeds and densities are then shown landing on the same point of the same measured curve, and the drag on a full size wing is predicted from a force read off a balance under a model. The lecture closes honestly: at high speed the speed of sound joins the list, the Mach number appears as a third group, and matching Reynolds alone becomes a quiet lie.

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