Differential pitch-control to optimize co-rotating stacked rotor performance
A rotor system for a rotorcraft having at least one rotor blade pair operably associated with a differential pitch assembly operably for controlling a pitch angle of an upper rotor blade and the lower rotor blade in the rotor blade pair. Operation of the differential pitch assembly changes the pitch of the upper rotor blade more severely than the pitch of the lower rotor blade. As such, the rotor system is configured to provide optimum pitch of the upper and lower rotor blades during a helicopter mode and an airplane mode.
1. A rotor system for a rotorcraft, comprising:
a rotor mast;
an upper rotor blade and a lower rotor blade, both the upper rotor blade and the lower rotor blade being coupled to the rotor mast so as to rotate about a singular axis of rotation and in a singular direction; and
a differential pitch assembly operably associated with the upper rotor blade and the lower rotor blade, so as to control a pitch angle of both the upper rotor blade and the lower rotor blade in tandem;
wherein the differential pitch assembly is configured to establish the pitch angle of the upper rotor blade approximately similar to the pitch angle of the lower rotor blade when the rotorcraft is in an airplane mode;
wherein the differential pitch assembly is configured to establish the pitch angles of the upper rotor blade and the lower rotor blade such that so that the pitch angle of the upper rotor blade is smaller than the pitch angle of the lower rotor blade when the rotorcraft is in a helicopter mode.
2. The rotor system according to claim 1 , wherein the lower rotor blade is clocked forward of the upper rotor blade by approximately 30 degrees about the axis of rotation.
3. The rotor system according to claim 1 , wherein the helicopter mode entails the lower rotor blade experiencing a higher inflow air velocity than experienced by the upper rotor blade.
4. The rotor system according to claim 1 , wherein the airplane mode entails the lower rotor blade experiencing a relatively similar inflow air velocity to that as experienced by the upper rotor blade.