How to Calculate Flow Deflection Angle due to Expansion Wave?
Flow Deflection Angle due to Expansion Wave calculator uses Flow Deflection Angle = (sqrt((Specific Heat Ratio Expansion Wave+1)/(Specific Heat Ratio Expansion Wave-1))*atan(sqrt(((Specific Heat Ratio Expansion Wave-1)*(Mach Number Behind Expansion Fan^2-1))/(Specific Heat Ratio Expansion Wave+1)))-atan(sqrt(Mach Number Behind Expansion Fan^2-1)))-(sqrt((Specific Heat Ratio Expansion Wave+1)/(Specific Heat Ratio Expansion Wave-1))*atan(sqrt(((Specific Heat Ratio Expansion Wave-1)*(Mach Number Ahead of Expansion Fan^2-1))/(Specific Heat Ratio Expansion Wave+1)))-atan(sqrt(Mach Number Ahead of Expansion Fan^2-1))) to calculate the Flow Deflection Angle, The Flow Deflection Angle due to Expansion Wave formula is defined as difference of Prandtl Meyer Functional values at upstream and downstream of expansions wave. Flow Deflection Angle is denoted by θe symbol.
How to calculate Flow Deflection Angle due to Expansion Wave using this online calculator? To use this online calculator for Flow Deflection Angle due to Expansion Wave, enter Specific Heat Ratio Expansion Wave (γe), Mach Number Behind Expansion Fan (Me2) & Mach Number Ahead of Expansion Fan (Me1) and hit the calculate button. Here is how the Flow Deflection Angle due to Expansion Wave calculation can be explained with given input values -> 450.7398 = (sqrt((1.41+1)/(1.41-1))*atan(sqrt(((1.41-1)*(6^2-1))/(1.41+1)))-atan(sqrt(6^2-1)))-(sqrt((1.41+1)/(1.41-1))*atan(sqrt(((1.41-1)*(5^2-1))/(1.41+1)))-atan(sqrt(5^2-1))).