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Aerodynamic Optimization and Experimental Analysis of Shrouded Rotor Blades

Abdallah Dayhoum, Alejandro Ramirez-Serrano, Robert Martinuzzi, University of Calgary

May 7, 2024

https://doi.org/10.4050/F-0080-2024-1289

Abstract:
Unmanned Aerial Vehicles (UAVs), particularly Vertical Take-Off and Landing (VTOL) aircraft such as quad-rotors and helicopters, have gained attention for diverse applications in military and civilian domains. However, to increase applications, reducing their power consumption and their restricted payload capacity. This paper describes a method to enhance the thrust capabilities of typical shrouded rotors through a novel rotor design. Beginning with an airfoil with a high lift-to-drag ratio. Blade element momentum theory (BEMT) is used to optimize the rotor's chord and twist distributions systematically along with precise induced velocity prediction in shrouded rotors. Furthermore, a validation process requires rotor manufacturing and experimentation. BEMT harmonizes momentum and blade element theories, offering a comprehensive framework for rotor behavior modeling, especially in hovering conditions. First, second, and third degrees functions are used to express both the chord and twist distributions along the rotor radius from where the best rotor design is obtained, for this, an experimental validation is employed. The experimental tests demonstrate improved performance, especially when the rotor designed using the higher degree functions is employed. The proposed approach provides a comprehensive approach to shrouded rotor design, offering advancements.


Aerodynamic Optimization and Experimental Analysis of Shrouded Rotor Blades

  • Presented at Forum 80
  • 6 pages
  • SKU # : F-0080-2024-1289
  • Aircraft Design

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Aerodynamic Optimization and Experimental Analysis of Shrouded Rotor Blades

Authors / Details:
Abdallah Dayhoum, Alejandro Ramirez-Serrano, Robert Martinuzzi, University of Calgary