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Adam Fisher

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Mitchell Quetant. Nathan Hammond. 5/5/09. Team 11 Progress Report. 2. Presentation Overview ... Team 11 Progress Report. 4. Project Scope. Build a display for ... – PowerPoint PPT presentation

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Title: Adam Fisher


1
  • Team 11
  • Adam Fisher
  • Presented by
  • Mitchell Quetant
  • Nathan Hammond

2
Presentation Overview
  • Background Information
  • Project Scope
  • First Semester (Design)
  • Second Semester (Manufacturing)
  • Test maneuvers
  • Problems Encountered
  • Possible Improvements

3
Project Background
  • CAPS is researching the development of fully
    electric ships
  • Developing real time hardware-in-the-loop
    simulation capabilities for electric ship power
    systems
  • Navy hopes to be able to create fully electric
    ships

4
Project Scope
  • Build a display for classroom and tour
    demonstrations
  • Given budget of 3000
  • Will monitor current and voltage changes during
    dynamic maneuvers

5
First Semester
  • Needs Assessment
  • Engineering Specifications
  • Concept Generation
  • -Initial Design
  • - Final Design
  • Cost Analysis

6
Needs Assessment
7
Engineering Specifications
8
Initial Design
  • Not maneuverable
  • Required too large of a pump
  • Costly

9
Final Design
  • More cost efficient
  • Lighter and more maneuverable

10
Cost Analysis
  • Projected materials costs were approximately
    2300.
  • Though within the budget, still close to limit.

11
Second Semester
  • Construction of Apparatus
  • Project Components
  • Final Product

12
Construction of Apparatus
  • Took approximately two months to build
  • Met with many delays

13
Project Components
  • Tank
  • Wooden Support
  • Pump
  • Motor
  • Piping System
  • Motor and Drive System

14
Tank
  • 8x12x30 Acrylic tank
  • ¼ in wall thickness
  • Bound using Acrylic solvent

15
Wooden Support
  • Constructed using 2x4 wood pieces and 2 ½ wood
    screws

16
Pump
  • Teel 4RJ94
  • 11/2 HP
  • Used for Pools and Spas
  • Requires 120 volt (typical wall plug)
  • Pumps 160 GPM
  • 8 to 4 Coupler

17
Piping System
  • PVC Schedule 40 pipe and fixtures
  • 4 to 2 Coupler
  • Valves are orientated strategically to throttle
    water

18
Motor and Drive System
  • Uses a 12 V DC motor
  • Drives a 4 metal propeller
  • Propeller weighs approx. ½ lb
  • Supported by wood and aluminum

19
Final Product
  • Eureka!!!!

20
Actual Cost Analysis
21
Test Maneuvers
  • There are five maneuvers for the apparatus
  • Accelerating Ship
  • Cruising Ship
  • Coasting Ship
  • Ship at Rough Seas

22
  • Accelerating Ship
  • Simulates the ship at start up
  • Cruising Ship
  • Similar to the accelerating ship maneuver, but
    adds use of the pump to simulate the ship already
    in motion
  • Coasting Ship
  • Simulates a ship moving in open water without use
    propulsion
  • Currently cannot test

23
Ship at Rough Seas
  • Two phases
  • With aid of the pump
  • Without aid of the pump
  • Simulates a boat in rough seas where the
    propeller will enter and exit the water

24
Crash-Astern
  • Simulates the effects of going into full reverse
    while already traveling at full ahead
  • Currently cannot test

25
Test Data
26
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27
Problems Encountered
  • Initially did not know everything to order
    through CAPS
  • Wavered on what kind of pump to use
  • Many unexpected delays in the ordering pipeline

28
Possible Improvements
  • Connect system to LABView
  • Change to the drive motor
  • Add an automated mechanical lifting system
  • Add a flow meter
  • Change ball valves

29
Acknowledgements
  • Dr. Michael Mischa Streurer
  • Anthony Gleaton
  • Keith Larson
  • Thomas Anthony
  • Cliff Loughmiller
  • Website
  • www.eng.fsu.edu/ME_senior_design/2003/team11/

30
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