University of North Texas Digital Library (University of North Texas) · 1947 · 21 citations · 0 references
Open access
AeroacousticsUnsteady FlowEngineeringHigh Pressure RiseAerospace EngineeringFluid MechanicsMechanical EngineeringCompressorMechanical SystemsCompressor RotorsAerodynamicsRotor DynamicTest RotorsPropulsionAxial-flow FanGas Turbine EngineThree-dimensional FlowFluid Machinery
An investigation has been conducted to determine whether three-dimensional flows may be utilized in axial-flow fan and compressor rotors so that the spanwise load distribution may be varied to obtain high pressure rise. Two rotors, one with approximately uniform and one with solid-body downstream tangential-velocity distributions, were designed and tested at the design blade angle. Radial surveys of total pressure, static pressure, and flow angle were made upstream and downstream of the test rotors through a quantity-coefficient range. Tests of the solid-body rotor were also conducted at a large value of tip clearance. The results indicated that the three-dimensional flows may be utilized with high efficiency and that the three-dimensional theory used in conjunction with two-dimensional cascade data is sufficiently accurate for design purposes. The tests also showed that the tip-clearance losses of rotors highly loaded at the tips are not excessive. The existing three-dimensional theory in simplified for and an illustrative rotor design are presented in appendixes.