![]() ![]() As the parametric math governing the airfoil shape is rather complex, it is often much faster to use a plotter that can output a series of XY points that define the curve. For this particular example, we will be using a NACA 4412 airfoil profile. This can be accomplished by importing a curve generated from an airfoil profile plot. The first task is to get the airfoil shape into the SOLIDWORKS environment. To demonstrate this, I have taken advantage of some of the features available in Solidworks and Flow Simulation. SOLIDWORKS Flow Simulation can help reduce the time and effort required to gather data about a potential aerodynamics problem. After running the tests all day, next comes the arduous task of data analysis from the limited data you have collected. If you have ever done any aerodynamic testing, you know that wind tunnels (or time in one) are expensive and requires a lot of pre-testing setup and a lot of data gathering. SOLIDWORKS Flow Simulation: Lift Up Your Design ![]()
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