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R I T 05002 Micro Turbine III Senior Design

R I T 05002 Micro Turbine III Senior Design. The Team. Lincoln Cummings (IE) – Project Manager Joe Calkins (ME) – Chief Engineer Mark Fazzio (ME) – Technical Writer Allison Studley (ME) – Minutes Taker Dr. Kozak – Faculty Advisor Dr. Walter – Faculty Coordinator

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R I T 05002 Micro Turbine III Senior Design

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  1. R I T05002Micro Turbine III Senior Design

  2. The Team Lincoln Cummings (IE) – Project Manager Joe Calkins (ME) – Chief Engineer Mark Fazzio (ME) – Technical Writer Allison Studley (ME) – Minutes Taker Dr. Kozak – Faculty Advisor Dr. Walter – Faculty Coordinator Sponsor – RIT Mechanical Engineering Dept. 05002 Micro Turbine III Senior Design

  3. Team Assignments 05002 Micro-Turbine Project Leader – Cliff Cummings Mentor – Prof. Jeff Kozak Turbine and Housing Leads – Joe/Allison Fuel Systems Lead – Mark Asst. - Cliff PDR/ CDR Paper Lead – Mark Presentation Lead - Joe 05002 Micro Turbine III Senior Design

  4. Mission Statement We will design and build a micro-turbine/generator that can be integrated onto a micro-air-vehicle airframe and power the vehicle’s accessories. The micro-turbine will be a continuation of the previous team’s project with the application of their design to be used for MAV power production. 05002 Micro Turbine III Senior Design

  5. Background • Current battery technology causes the battery to be up to half of the weight of the MAV. • Research into lighter weight power generation methods led to micro-turbine generators. • Third generation RIT Senior Design project 05002 Micro Turbine III Senior Design

  6. Primary Objectives • Produce a constant 5 watts of power • Overall weight of less than 45 grams • Integrated into the MAV airframe • Minimum flight time of 3 minutes Additional Objectives • Drive the propeller of the plane • Increase efficiency of the system 05002 Micro Turbine III Senior Design

  7. Previous Design 05002 Micro Turbine III Senior Design

  8. Previous Turbine Design Senior Design Team 04013 05002 Micro Turbine III Senior Design

  9. Concept Considerations • Smaller housing needed to integrate into MAV airframe • Compressed gas containers must be integrated into MAV airframe • Components capable of high rotational speeds • Containment of high pressures within the system • Minimum 3 minute run time • Overall system weight goal of 45 grams 05002 Micro Turbine III Senior Design

  10. Research Methods • Preliminary Research • Review of last year’s design • Additional Research 05002 Micro Turbine III Senior Design

  11. Feasibility Assessment • 2 Options – Direct Comparison • >2 Options – Weighted Comparison 05002 Micro Turbine III Senior Design

  12. Feasibility Assessment Considerations • Ability to meet the objectives • Overall Size • Total Weight • Availability of procured items • Ease of Manufacture • Cost of procurement/manufacture 05002 Micro Turbine III Senior Design

  13. Turbine Concepts Axial Impulse Turbine 2-D Pelton Wheel Turbine 3-D Pelton Wheel Turbine Francis Turbine 05002 Micro Turbine III Senior Design

  14. Turbine Feasibility 05002 Micro Turbine III Senior Design

  15. Turbine Feasibility Axial Impulse Turbine 2-D Pelton Wheel Turbine ? 3-D Pelton Wheel Turbine Francis Turbine 05002 Micro Turbine III Senior Design

  16. Housing Concept • Cross flow design • 2 Inlets – 2 Outlets • Tight tolerances to prevent flow from going around the turbine. • 30% Fiberglass reinforced Nylon material • Overall Size: 1.25” OD 0.6” Depth 05002 Micro Turbine III Senior Design

  17. Housing Feasibility • Smaller OD • Lighter weight • O-Ring seal vs. Gasket seal • Inlet/Outlet redesign • Designed for manufacturability 05002 Micro Turbine III Senior Design

  18. Housing Analysis 05002 Micro Turbine III Senior Design

  19. Propellant System Concepts Fuel • Compressed CO2 Cartridges • Compressed N2 Cartridges • Compressed Air Tanks Tubing • Flexible plastic lines • Rigid metal lines Regulator • Bellows regulator to decrease the inlet pressure • Micro nozzle to decrease the inlet pressure 05002 Micro Turbine III Senior Design

  20. Propellant System Feasibility Fuel • Compressed CO2 Cartridges • Compressed N2 Cartridges • Compressed Air Tanks Tubing • Flexible plastic lines • Rigid metal lines Regulator • Bellows regulator to decrease the inlet pressure • Micro nozzle to decrease the inlet pressure 05002 Micro Turbine III Senior Design

  21. Other Design Concepts/Considerations • Bearings: Sealed Air Shielded Magnetic • Seals: O-Ring Gasket • Use outlet flow in rear of wings/plane to reduce pressure drag 05002 Micro Turbine III Senior Design

  22. Other Design Concepts/Considerations • Bearings: Sealed Air Shielded Magnetic • Seals: O-Ring Gasket • Use outlet flow in rear of wings/plane to reduce pressure drag 05002 Micro Turbine III Senior Design

  23. Test Setup • Test initially using laboratory supplied compressed nitrogen. • Canister compressed gas testing will be performed after concept is proven 05002 Micro Turbine III Senior Design

  24. Financial Analysis 05002 Micro Turbine III Senior Design

  25. Final Design 05002 Micro Turbine III Senior Design

  26. Design Limitations • Propellant cartridge & piercing device weight is 24x higher than the design target weight • Means of reducing the pressure of the propellant are inefficient • Finding a generator to meet the high speed requirements 05002 Micro Turbine III Senior Design

  27. Schedule 05002 Micro Turbine III Senior Design

  28. Questions? 05002 Micro Turbine III Senior Design

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