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Solar Car Fundamentals

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Presentation on theme: "Solar Car Fundamentals"— Presentation transcript:

1 Solar Car Fundamentals

2 Overview Maximize power produced Minimize power needed
Solar cells → motor → gears → wheels Makes power Friction Drag Acceleration Uses power

3 Drive System Fundamentals
Solar Cells Gears Motor Wheel

4 Gear Ratio 1 Turn 2 Turns Axle Gear Teeth 20 = = = 2 Motor Gear Teeth
10 Gear Ratio = 2 Red gear spins twice as fast as blue

5 Motor Speed 2 Turns Wheel Speed 1 Turn Motor Speed = Wheel Speed Gear Ratio 2 Turns = 1 Turn 2

6 Circumference 2 π 6 = 38 cm Radius 6 cm 2π x Radius Radius 3 cm
2 π 3 = 19 cm

7 How does wheel size affect the speed?

8 Circumference Radius 6 cm Circumference = 2πr = 38 cm Radius 3 cm
For each turn of the wheel your car travels the circumference of the drive wheel Doubling wheel radius also doubles circumference which will make your car go twice as far in one rotation

9 So why not use really big wheels?!
Because the motor performs best at a certain speed! Suggestion: Pick a wheel size that you like. Experiment with different gears and gear ratios to find the best for your car. The best gear ratio will depend on the sun’s intensity and whether you’re running on batteries.

10 Lessons learned In full sun
So if your wheel r = 6 cm, then the best GR is GR = 6 cm x 1.14/cm = 6.8 In half sun With batteries

11 Getting the most power output from a PV panel
Tilt towards sun Possibly increase solar input with reflectors

12

13 Incidence angle

14

15 Again Again

16 Where is the sun? Where is the sun?

17 On May 20 the sun will rise to around 70 degrees
Where is the sun? Where is the sun? On May 20 the sun will rise to around 70 degrees at solar noon (1 p.m.).

18 Car Power Fundamentals
Air Drag Friction Acceleration

19 Reducing car power needs
Friction: Low weight Axle bearings Skinny tires Air Drag: Small frontal area Smooth shape Acceleration: Which body shape is fastest?

20 What a fast car looks like
Panel towards sun Small frontal area Straight light wheels Light

21 What a slow car looks like
Panel not towards sun Hot glue abuse Heavy crooked wheels Way too BIG and heavy

22

23 So that’s all there is to it …
Reflectors Make shape smooth Bearings Motor speed GR, r Reduce friction Face the sun Minimize weight Reduce frontal area

24 Examples of JSS Cars

25 Examples of JSS Cars

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41 Examples of JSS Cars

42 The End Any questions?


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