I will create a simulation of an airplane wing, how it works, how the air controls it, and how the wing moves up and down
The wing of the aircraft is primarily responsible for the rise and fall of the aircraft, which is a practical application of Bernoulli's principle. The purpose of this model is to explain and teach this effect.
The model is based on 3 main parts that control it:
An air cannon, a stepper motor, and a model of an airplane wing
When the air cannon is operated and driven by a stepper motor, the wing is supposed to follow the cannon air according to Bernoulli's law of fluids.
Construction Parts
The upper and lower box and the middle surfaces will be made of Plywood 3mm.
and the middle sticks will be made of beech wood.
Input
(Sensing, Tactile Input, and/or Graphical Input)
When the device is turned on, the fan will start working.
When using the control panel , the fan moves up and down, and thus the wing moves.
Action
(Physical and/or Graphic)
fan by strpper motor
wing by air flow
Brain
Arduino UNO
Power Management
Power supply 9v
Model parts
1. Uppar Part.
2. Moving surface.
3. Base
Minimum Features: are the least amount of features that would demonstrate the coverage of all the technical modules and their complete integration
Complete Features: are the set of features that will complete your original project objective and vision
Nice-to-have Features: are the extra set of features that will make the project cooler, yet they need extra time, effort, and/or resources to finish
Minimum User Features
Turn on the fan
Action: turbo Fan 12 V
Sensing:
User Input: on - off switch
move the moving surface
Action: stepper motor
Sensing: When you put your hand in front of the sensor.
User Input: Ultra Sonic
Complete User Features
Stop the motor when it reaches the top.
Action: Limit switch
Sensing:
User Input: Press limit switch
Nice-to-have User Features
Show information about the Bernoulli effect.
Action: lcd screen
Sensing:
User Input:
Task
Sub-Tasks
From:
To:
Designing
Base design
Upper part design
plate design
7 - 9
9 -9
Fabrication
laser cuting
3d printing
14 -9
14 -9
Programming
code for ultra-Sonic sensor
code for Stepper Motor
11 - 9
14 - 9
Documentation
15 - 9
18 - 9
Component/Material
Amount
Link
Stepper Motor Driver (A4988)
1
Lead Screw Nut ID 8mm x L 400mm]
1
Linear Guide [D 8mm-L 1000mm]
1
Recording Voice Module ISD1820 + Speaker
1