Print Email Facebook Twitter Propeller Slipstream Characterisation by Large-Scale PIV Title Propeller Slipstream Characterisation by Large-Scale PIV: An experimental study for Isolated Propeller and Propeller-Wing Interaction Author Cueto Corral, Pablo (TU Delft Aerospace Engineering) Contributor Sciacchitano, A. (mentor) Scarano, F. (graduation committee) Degree granting institution Delft University of Technology Corporate name Delft University of Technology Programme Aerospace Engineering Date 2023-12-14 Abstract This study explores the flowfield around a pusher propeller-wing configuration using Lagrangian Particle Tracking (LPT). It assesses LPT’s capability to characterise propeller-wing interactions, emphasising its ability to resolve complex flow dynamics.The experiment successfully achieves high particle concentrations downstream of the propeller, with propeller rotation enhancing the uniformity of the particle distribution. Velocity measurements are precise and feature low uncertainty, and vortex dynamics shed by the propeller are effectively resolved.Furthermore, the study confirms LPT’s robustness in characterising wing-propeller flow characteristics, particularly in thrust and torque calculations, highlighting its non-invasive nature for performance measurements.The investigation reveals how the wing influences the slipstream’s vortex structure and identifies the pylon’s effects. The method captures the propeller-induced effects on the wing, providing insights into upwash, downwash, and angle of attack variations.In conclusion, this research demonstrates the utility of LPT in comprehensively characterising propeller-wing interactions, offering valuable insights for aviation and propeller innovations. Subject PIV (particle image velocimetry)LPT (Lagrangian particle tracking)Propeller SlipstreamPropeller-wing interactionVortex dynamicsLarge-Scale PIVPropeller Aerodynamics To reference this document use: http://resolver.tudelft.nl/uuid:6d071306-faef-4cb9-9c21-a184fc8aaf0e Part of collection Student theses Document type master thesis Rights © 2023 Pablo Cueto Corral Files PDF P_Cueto_PropellerSlipstre ... alePIV.pdf 30.13 MB Close viewer /islandora/object/uuid:6d071306-faef-4cb9-9c21-a184fc8aaf0e/datastream/OBJ/view