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Design of a Dawn Mulvihill Competition Model Airplane Presented by: Jacob Gomez And Daniel Heinrich Advisor: Professor Fazal B. Kauser, P.E.
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Overview Design and construction of an elastic powered, free-flight, model airplane conforming to the rules of Dawn Mulvihill.
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Introduction More from less. Flying for time. Elastic powered.
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Introduction Dawn Mulvihill Absence of thermals Most efficient model wins
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Purpose Maximum utilization of energy 1/8 inch rubber strip power source Dawn Mulvihill Classification Double the existing high time
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Dawn Mulvihill Must be rubber strip powered Projected wing area under 300 in² No maximum flight time Models flown at 7:00AM
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Rationale Indoor models fly for more than one hour Indoor models have limited ceiling Outdoor models have virtually unlimited ceiling Outdoor times 25% of indoor times
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Hypothesis Current designs not at maximum efficiency. 30 minute flight times should be attainable. Utilization of energy. Maximization of thrust.
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Research Most research passed on orally Current designs evaluated Interviewed the “Top Guns” of Mulvihill. The canard proven more efficient
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Methods to Achieve Goal Aircraft Design Testing Equipment Evaluation and Analysis of Data Flight Testing
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Design
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Equipment - testing
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Generated Torque Curves
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Equipment - flying Winding stooge. Stretch winding. Efficient winding.
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Evaluation and Analysis Selection of motor with most linear torque curve. Matching propeller design to torque output. Allowing the propeller to operate in a narrower band of torque values. Propellers of varying design and initial pitch settings.
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Flight Testing 3 Models to be constructed First model approximately 170 in² Second model full size with standard prop Third model full size with optimal prop
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Time Table (rev 1) Project began in August 2003 with design and evaluation process. Table is subject to revision.
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Closing Thoughts
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