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HYPERLYNX
PRELIMINARY DESIGN
BRIEFING
University of Colorado Denver
Fifth Street Hub
1224 5th St.
Denver, CO 80204
Team Affiliation
University of Colorado,
Denver
Team Advisors
Ron Rorrer
Doug Gallagher
Team Intent
To present at design
weekend and build a
working pod prototype
Team Members
Connor Catterall
Ben Cooper
Nicole Garcia
George Kemp
Chandler Lacy - Team Leader
John Spinelli
Mark Urban
Susan Waruinge
TEAM SPECIFICATION
OUTLINE
Design Specifications
Overall Pod Design
Design Specifications
Pod Braking Mechanism
Pod Stability Mechanism
Pod Navigation System
Pod Stored Energy
Estimated Pod Dimensions
Body
Frame
Estimated Pod Power Consumption by Subsystem
Estimated Pod Weight by Subsystem
Pod Controls System
Pod Free Body Diagram
Pod Test Environments
Pod Levitation Mechanism
Pod Landing Gear
Safety features
Pod Propulsion Mechanism
Hazardous materials
Pod Intake Fan
Safety
Budget and Fundraising
OVERALL POD DESIGN
DESIGN SPECIFICATIONS
*All dimensions in feet
ESTIMATED POD DIMENSIONS
DESIGN SPECIFICATIONS
Body shape acts as a nozzle
and diffuser when traveling
through tube
Increases flow velocity
around pod
Elliptical Cross Section
Cut away belly section
Body will be constructed out
of carbon fiber
Section View illustrating body
geometry
BODY
DESIGN SPECIFICATIONS
Overall body shape
Partial Monocoque Design
Formers will be 3D printed
CNC with 3D printing head
Carbon Fiber reinforced ABS plastic
Former surface finish will be
smoothed after initial printing
Stringers will be manufactured out of
aluminum
Shelled carbon fiber body will
enclose frame
FRAME
DESIGN SPECIFICATIONS
Frame design
3D printer head
attached to CNC
Component
Estimated Weight (lbs)
Frame
376
Body
312
Intake Fan
66
Battery
44
Brakes
50
Landing Gear Assembly
39
Controls
11
Levitation
90
SpaceX Add-ons
162
Total Mass
1150
POD WEIGHT
DESIGN SPECIFICATIONS
y
z
x
FRONT VIEW
WPOD
FDF
FD
M CM
FP
2F LM
2F LM
POD FREE BODY DIAGRAM
DESIGN SPECIFICATIONS
2F LM
• FP = Force of the Pusher
• FLM = Force of Levitation
Motor
• MCM = Moment about the
center of mass
• WPOD = Weight of the Pod
• FD = Force of Drag
FINAL_PRELIM_11.pdf (PDF, 1.59 MB)
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