Development of a Wind Tunnel Test Cell for Small Propellers with Application to the Plank Unmanned Aerial Vehicle

dc.contributor.advisorDr. Ashok Gopalarathnam, Committee Memberen_US
dc.contributor.advisorDr. Pierre A. Gremaud, Committee Memberen_US
dc.contributor.advisorDr. Charles E. Hall Jr., Committee Chairen_US
dc.contributor.authorBishop, Jason Thomasen_US
dc.date.accessioned2010-04-02T18:15:52Z
dc.date.available2010-04-02T18:15:52Z
dc.date.issued2009-11-30en_US
dc.degree.disciplineAerospace Engineeringen_US
dc.degree.levelthesisen_US
dc.degree.nameMSen_US
dc.descriptionNorth Carolina State University Theses Mechanical and Aerospace Engineering.;North Carolina State University Theses Mechanical and Aerospace Engineering.
dc.description.abstractThe Plank unmanned aerial vehicle has been designed to be a test platform for an experimental bias angular moment flywheel designed by the NASA Guidance and Controls Branch. The baseline configuration of the aircraft is a flying wing with zero quarter-chord sweep. The benefits of this type of configuration include low structural weight and complexity and reduced drag compared to a standard wing-tail configuration. However, this type of configuration is inherently sensitive to pitch disturbances due to low pitch damping and moment of inertia. In order to remedy this sensitivity, NASA has proposed the use of a bias angular momentum flywheel with its rotational axis aligned with the z-axis of the aircraft. This momentum wheel will effectively stiffen the pitch axis of the aircraft by coupling it with the high damping, high moment of inertia roll axis. The aircraft was designed to be re-configurable allowing for a variety of flying qualities ranging from a well-behaved wing and aft tail configuration to the much more sensitive flying wing configuration. This range of flying qualities will allow for a more comprehensive performance evaluation of the momentum wheel system as well as contribute to risk mitigation during initial flight tests. An electric propulsion system has been chosen for this aircraft due its simple operation and low vibration characteristics. The AXi 5330/18 motor was chosen along with a Castle Creations Phoenix HV-110 electronic speed control. The system is powered by three FlightPower 5000 mAh 10s Evo Lite battery packs connected in parallel. A four-bladed propeller configuration was used in order to absorb the necessary power from the motor while still fitting between the tail booms of the aircraft. In order to experimentally evaluate the performance of the Plank propulsion system in the NCSU Subsonic Wind Tunnel, the Propeller Test Cell (PTC) was developed. The PTC consists of a strain gage based load cell that measures the thrust and torque generated by the propulsion system along with system operating conditions such as current, voltage, RPM, motor temperature, and battery consumption. The PTC was used to characterize the performance of three candidate propellers for the Plank aircraft: 16x10, 17x8, and 17x10. With this data, certain propulsion specific performance parameters of the aircraft were calculated including thrust and power available, rate of climb and climb angle, range, endurance, and take off performance. After analyzing the performance for each of the three propellers, the 17x8 propeller produced the most desired aircraft performance and was chosen to be paired with the AXi motor and the Plank aircraft.en_US
dc.formatThesis (M.S.)--North Carolina State University.
dc.identifier.otheretd-10152009-101337en_US
dc.identifier.urihttp://www.lib.ncsu.edu/resolver/1840.16/2610
dc.rightsI hereby certify that, if appropriate, I have obtained and attached hereto a written permission statement from the owner(s) of each third party copyrighted matter to be included in my thesis, dis sertation, or project report, allowing distribution as specified below. I certify that the version I submitted is the same as that approved by my advisory committee. I hereby grant to NC State University or its agents the non-exclusive license to archive and make accessible, under the conditions specified below, my thesis, dissertation, or project report in whole or in part in all forms of media, now or hereafter known. I retain all other ownership rights to the copyright of the thesis, dissertation or project report. I also retain the right to use in future works (such as articles or books) all or part of this thesis, dissertation, or project report.en_US
dc.subjectpropeller testingen_US
dc.subjectplank aircraften_US
dc.titleDevelopment of a Wind Tunnel Test Cell for Small Propellers with Application to the Plank Unmanned Aerial Vehicleen_US
dcterms.abstractKeywords: propeller testing, plank aircraft.
dcterms.extentxii, 86 pages : illustrations (some color)

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