Fuel Cell UAV 2016 PROJECT ADVISORS DR. ZHANG AND DR. DEMUREN

Slides:



Advertisements
Similar presentations
ODU UAV TEAM 2013 John Plank, Ethan Pratt, Michael Midkiff Kenneth Jermstad and Ignacio Santos Proudly Present: Advisor: Dr. Drew Landman.
Advertisements

College of Engineering and Computer Science Department of Mechanical and Materials Engineering Wright State University Regular Class Aircraft SAE Aero.
What is engineering? Engineering - The branch of science and technology concerned with the design, building, and use of engines, machines, and structures.
RockSat-C 2012 CoDR Minnesota Sound Wreckers Conceptual Design Review University of Minnesota Alexander Richman Jacob Schultz Justine Topel Will Thorson.
1 Air Launch System Project Proposal February 11, 2008 Dan Poniatowski (Team Lead) Matt Campbell Dan Cipera Pierre Dumas Boris Kaganovich Jason LaDoucer.
Team Members: Félix O. Rivera Vélez Héctor M. Lebrón García Héctor J. Collazo Carro Orlando Valladares López.
GPS Vehicle Tracking/Payload Release System For Small UAV Project Team
Guidelines Presentation. Aircraft Aim & Judging The aircraft needs to transport the mirror segments of the ESO European Extremely Large Telescope, being.
Oklahoma Space Grant Long Range/Endurance UAV projects.
Chase Beatty (Team Leader) Brian Martinez (Organizer) Mohammed Ramadan (Financial Officer) Noe Caro (Historian) SAE AERO Chase Beatty.
David Chandpen (Lead Engineer) Matthew Maberry Travis Cushman Benjamin Waller Zach Veilleux Joseph Travaglini.
MAE 1202: AEROSPACE PRACTICUM Lecture 12: Swept Wings and Course Recap April 22, 2013 Mechanical and Aerospace Engineering Department Florida Institute.
04013 Micro Turbine Senior Design Micro Turbine Senior Design PDR – May 20 th, 2004 Project
1 Design Group 2 Kat Donovan - Team Leader Andrew DeBerry Mike Kinder John Mack Jeff Newcamp Andrew Prisbell Nick Schumacher Conceptual Design for AME.
AME 441: Conceptual Design Presentation
Oculus Superne. 2 System Definition Review Mission Objectives Concept of Operations Aircraft Concept Selection Payload Constraint Analysis and Diagrams.
Project Status Update II R09230: Open Architecture, Open Source Unmanned Aerial Vehicle for Imaging Systems A. Benjamin Wager (ME) B. Michael Skube (ME)
JLFANG409-NG Next Generation Joint Strike Like Unmanned Fighter Team Sleepwalker: John Meissner, Leo Nakanishi, Patty Martinez, Matthew Everingham Project.
Concept Design Review Kozak Micro Air Vehicle Project: P Mark Baybutt Electrical Engineering David Blonski Industrial Engineering Team Leader.
Project Review Micro Air Vehicle Project: P Sponsored by Impact Technologies The Boeing Company Mark Baybutt Electrical Engineering David.
Acknowledgments Summary of MAVs Design Criteria Design Solution Conclusions and Future Work Energy Harvesting for Micro-Air Vehicles Testing Harvesting.
UAV UF 118 Night Falcon ONE OF THE ULTIMATE DEFENSE SYSTEMS FROM SURVAILLANCE TO TAKING OUT ANYTHING THAT MOVES.
Parts of an Aircraft. 8/7/2015Aerodynamics Day 12.
MAE Team Members: Timothy Bernadowski Michael Beyrodt Brandon Snyder Brian Johnson Joe Hopkins Ryan Turne r Samuel Brooks MAE Advisors: Dr. Ayodeji Demuren.
Intercollegiate Rocket Engineering Competition Spring 2015 EML Ethics and Design Project Organization.
AIAA Hybrid Airliner Competition 2013 The Transporters.
MAE Team Members: Timothy Bernadowski Michael Beyrodt Brandon Snyder Brian Johnson Joe Hopkins Ryan Turne r Samuel Brooks MAE Advisors: Dr. Ayodeji Demuren.
Genesis UAV Challenge Presented by Simon Butterworth Aerospace Operational Support Group RAAF.
Project Specifications and Scope. Presentation Outline Team Introduction Project Overview Competition Specifications Mission Profile Score Analysis Subsystem.
Team 6: “Soldier Portable UAV” David Neira TJ Worden Matthew Martin Joshua Mellen Ona Okonkwo Josiah Shearon A IR HERCULES 1.
2015 SAE Aero East Design Team 2015 SAE Aero Design East Team Mid-Term Status Report (3/5/2015)
The Lumberjacks Team /16/12 Brian Martinez.
NASA Symposium 2015 Pima Community College April 18, 2015 Team Members Nicholas Patzke Gustavo Guerrero 1.
Design Chapter 8 First Half. Design Requirements and Specifications Payload Range Cruising Speed Takeoff & Landing Distance Ceiling.
Group 13 Heavy Lift Cargo Plane Richard-Marc Hernandez Yoosuk Kee Stephen McNulty Jessica Pisano Chi Yan Project Advisor: Siva Thangam.
UAV TEAM STATUS REPORT #2 Kenneth Jermstead Michael Midkiff Ethan Pratt Ignacio Santos John Plank April
SAE AERO DESIGN® EAST COMPETITION A SENIOR DESIGN PROJECT PREPARED IN PARTIAL FULFILLMENT OF THE REQUIREMENT FOR THE DEGREE OF BACHELOR OF SCIENCE IN MECHANICAL.
AAE 451 Aircraft Design First Flight Boiler Xpress November 21, 2000
Introduction to IWA. The IWA is based on a patented, next generation design called the Internal Wing Aircraft. The concept brings three separate wings.
P15462 – TETHERED WIND ENERGY PLANE Devin Bunce Matthew Kennedy Matthew Maginn Carl Stahoviak Matthew Zebert.
P07108: METEOR Instrumentation Recovery System. Team Bash Nanayakkara – Project Manager (ISE) Scott Defisher – Fuselage Design (ME) Mike Kochanski – Software.
MAE Team Members: Timothy Bernadowski Michael Beyrodt Brandon Snyder Brian Johnson Joe Hopkins Ryan Turne r Samuel Brooks MAE Advisors: Dr. Ayodeji Demuren.
ME 440 Aerospace Engineering Fundamentals Hot Topic of the Week.
Amy Blas Hawaii Space Flight Laboratory University of Hawaii.
Mini Autonomous Flying Vehicle CASDE is part of the National effort to develop a Micro Air Vehicle. CASDE has chosen a Mini Vehicle, in the short term,
MAE Team Members: Timothy Bernadowski Michael Beyrodt Samuel Brooks Joe Hopkins Brian Johnson Brandon Snyder Ryan Turne r MAE Advisors: Dr. Ayodeji Demuren.
P07122: Autonomous Quadcopter Jason Enslin – EE: Team Leader, Circuit Design/Testing Glenn Kitchell – CE: Programming, Software Design Richard Nichols.
SAE Aerospace Regular Class High Lift Competition Educational Aircraft Design Objective: To develop a stable, controllable, high lift aircraft to serve.
Colorado Space Grant Symposium 2010 Colorado State University Advisor: Dr. Thomas Bradley Team: Derek Keen, Grant Rhoads, Tim Schneider, Brian Taylor,
Planetary Lander PDR Team Name
Aircraft Design Process
SAE Aero 2017 Midterm Presentation Joe Zongolowicz, Nick Montana, Frank Dixon, Kevin Scheventer, Kathy Hansen, Marquis Ward, Gerald Short, Zhangsiwen Xiao,
AUTONOMOUS LONG-ENDURANCE UAV (SMART INTERN PROJECT)
AAE 251 Vehicle of the Week: Boeing 787 Dreamliner
SAE Heavy Lift Cargo Plane
Preliminary Wing Sizing
FINAL REVIEW UAV AIRFRAME B
Matching of Propulsion Systems for an Aircraft
Fuel Cell UAV 2016 PROJECT ADVISORS DR. ZHANG AND DR. DEMUREN
Congratulations…Welcome to UTHM PARIT RAJA….A Place To Be..
“Stylish” R/C Airplane Design Candidate Concepts
Sounding Rocket PDR Team Name
Sounding Rocket CDR Team Name
Congratulations…Welcome to UTHM PARIT RAJA….A Place To Be..
Mars Rover CDR Team Name
2019 First Nation Launch – PDR Virtual Review
P07122: Autonomous Quadcopter
Team 10: Vertigo Calvin College Senior Design 2017/18 The Project
Unmanned Powerline Surveillance Aircraft Group Name: Watchmen
Presentation transcript:

Fuel Cell UAV 2016 PROJECT ADVISORS DR. ZHANG AND DR. DEMUREN TEAM LEAD MARYAM AMER MAE TEAM MEMBERS MITCH DEIGHAN COREY GUILBAULT KRISTA SAUNDERS JOHN SHAW RYAN DUDLEY GASTON GATETE COLBY HENSON BRADLEE GARANT GEORGE PORTILLIO

Overview Project Background Project Schedule Project Budget Design Summary Airframe Catapult Fuel Cell Flight Management Flight Tests Future Work

Project Background Limited Life Expectancy of Battery during flight Fuel cells provide the potential for long range flight performance Proof of Concept Mission -Traditional aircrafts are loud. -Batteries are heavy and to get longer duration, you need a larger battery. A fuel cell allows you to increase duration by increasing the amount of hydrogen -On a small scale it is more difficult to use a fuel cell due to the initial weight of the fuel cell. On a larger scale the weight of the fuel cell has less of an effect on performance. -This proof of concept mission allows us to show that a fuel cell is also relevant for small UAVs and can increase the flight duration of UAVs

Project Budget Proposal : $3625 Received: $1000 from College of Engineering $190 from Electrical and Computer Engineering $250 from Mechanical and Aerospace Engineering Budgeted Spent Remaining Airframe 740 $722.73 $17.27 Fuel Cell 500 $261.52 $238.48 Catapult 200 $157.44 $42.56 Total Budget $1,440.00 $298.31

Design– Airframe Skywalker X8 Flying Wing High Volume Fuselage No tail, theoretically more efficient than tradition planform. Could it work?

Design– Airframe Unique airframe and airfoil shape Published data limited Resorted to modeling XFLR5 (Airfoil, Wing theory) Helpful, but to many shortcomings No Drag No Dimensions CFD (Navier-Stokes based) Better drag estimate Accurate model

Design– Airframe Internal Layout Conclusion: flight feasible Based on L/D ratio Airflow to Fuel Cell Cooling Stability Conclusion: flight feasible ~130 Watts sustained 3 Purchased and Assembled

Design– Catapult Purpose: Provide power to support added weight Consistent launch for pilot convenience Iterative design process Prototype Design and initial build Test Launch unweighted and weighted airframe Analyze Identified improvement areas Support Material Reinforcement at joints Power Launch mechanism Refine

Fuel Cell Horizon H-100 Fuel Cell 100 W Weigth: 1.8 kg Capacity: 10 L 1 HydroSTIK = 10 AA batteries Venom 20C 3s Battery and E-flight 3s for flow rate controller

Fuel Cell Testing Power Output

Hybrid System Design Power Management (Fuel Cell and battery will run in parallel)

Design – Flight Management Initial Pilot Training Started with Parrot AR Drone Quadricopter 2.0 Transitioned to ParkZone Ember 2 RTF Aircraft Controlled flight Piloting in confined space Practiced landing Helped us gain a greater feel for the controls Practiced with Phoenix RC Pro Simulator Quadcopter Ember Drone Delta Wing Simulator Delta Wing

Flight Tests Summary Basic Testing Catapult Launch Testing Accurate Load Catapult Testing Fuel Cell Integration Testing Flight Demo Basic Testing Simple hand launch Catapult Launch Testing Stable take off Accurate Load Testing Flight handling Fuel Cell Integration Testing Data Experimentation Final Flight Demonstration Performed flight tests with hand launching Simplicity Performed flight tests with catapult launching Steady take off Performed flight tests with added weight to simulate the additional weight of the Fuel Cell The fuel cell and required components would add …..grams to the planes weight. Weight was incrementally added by using……

Future Work Catapult Airframe Fuel Cell Flight Management Potential Larger Motor? Using thrust stand data Potential Test Parachute Fuel Cell Flight Management

Questions?