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ENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and Computer Science Victoria University of Wellington Elf Eldridge (ECS) ENGR110 1 / 30
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Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Mar 18, 2018

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Page 1: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

ENGR110 T2 2017Engineering Modeling and Design

Elf*, Howard Lukefahr, Arthur Roberts

School of Engineering and Computer ScienceVictoria University of Wellington

Elf Eldridge (ECS) ENGR110 1 / 30

Page 2: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Next time on ENGR110...

To increase voltages with capacitors we need diodes

Today: Diodes, Transistors, Semiconductors andwhy almost all solar cells are crap.

Elf Eldridge (ECS) ENGR110 2 / 30

Page 3: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Topic 1

Topic 1: Circuit Elements

Elf Eldridge (ECS) ENGR110 3 / 30

Page 4: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Diodes

Allow current to flow in a single direction only.

Have an associated voltage drop across them.

Elf Eldridge (ECS) ENGR110 4 / 30

Page 5: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Voltage Multiplier

Allows voltages to be increased above what is input (in AC)

This WONT be examined.

Elf Eldridge (ECS) ENGR110 5 / 30

Page 6: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Rectification

Diodes allow RECTIFICATION (conversion of AC to DC). Adding acapacitor helps smooth the DC that’s generated.

This WONT be examined.

Elf Eldridge (ECS) ENGR110 6 / 30

Page 7: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Triodes and Vacuum Tubes

In the beginning there were Triodes (1906) and Vacuum tubes (1904)

Electronic control of current.

Elf Eldridge (ECS) ENGR110 7 / 30

Page 8: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

TransistorsAllow currents to be switched on and off via an applied voltage.

Electronically controlled switches.https://www.youtube.com/watch?time_continue=39&v=6HkCGgIYNps

Elf Eldridge (ECS) ENGR110 8 / 30

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Electronic Control

Allow you to use small voltages/current to control much largervoltages/currents!

The h-bridge you used in the AVC was a series of transistors.Elf Eldridge (ECS) ENGR110 9 / 30

Page 10: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Question: what is so special about Silicon

Why is Silicon in all of these?

Elf Eldridge (ECS) ENGR110 10 / 30

Page 11: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Silicon is a cheap semiconductor

And we can precisely control its electrical properties through chemistryand the application of electric fields

Doping or applying a voltage to silicon can allow (or prevent) electronsjumping from the valence to the conduction band.

Elf Eldridge (ECS) ENGR110 11 / 30

Page 12: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Solar cells and LEDs

Silicon has a band gap of 1.11 eV (equivalent to a wavelength of 1100nanometers)

Which mean it also interacts with light!

Elf Eldridge (ECS) ENGR110 12 / 30

Page 13: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Look at how little of the spectrum this covers!

The rest of this is absorbed as heat!

Peak solar intensity is about 550nm (or about 2.2eV)

Elf Eldridge (ECS) ENGR110 13 / 30

Page 14: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Other semiconductors

Why don’t we use something else?!

Elf Eldridge (ECS) ENGR110 14 / 30

Page 15: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

We do!

We just don’t use much of it...yet...

Elf Eldridge (ECS) ENGR110 15 / 30

Page 16: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Because Money!

Elf Eldridge (ECS) ENGR110 16 / 30

Page 17: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Question:

Why are all these efficiencies so low?

Elf Eldridge (ECS) ENGR110 17 / 30

Page 18: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Why are all these efficiencies so low?

It’s actually because of the definition of efficiency for solar cells...

Elf Eldridge (ECS) ENGR110 18 / 30

Page 19: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Max efficiency

We can calculate a maximum solar cell efficiency based on the BandGap of a semiconductor..

N.B. This is HIGHLY temperature dependant (best at about 0◦C).Elf Eldridge (ECS) ENGR110 19 / 30

Page 20: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Topic 1: Review Questions

If you want to know more about this consider doing a second yearECEN course (maybe ECEN202 - digital electronics).

Core: Why is Silicon used in most current solar cells?Completion: Why are solar cell efficiencies so much lower than forturbines?Challenge: How might you increase the efficiency of a cell beyondthis limit?

Student Debthttps://www.youtube.com/watch?v=P8pjd1QEA0c

Elf Eldridge (ECS) ENGR110 20 / 30

Page 21: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Topic 2

Topic 2: Other Energy Sources

Elf Eldridge (ECS) ENGR110 21 / 30

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Alternative Solar

Also known as Solar Thermal generators:

Focus sunlight at a point to boil water. Max efficiency of about 40%.

Elf Eldridge (ECS) ENGR110 22 / 30

Page 23: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Turbine Design matters!

https://www.youtube.com/watch?v=-YJuFvjtM0s

Elf Eldridge (ECS) ENGR110 23 / 30

Page 24: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Wind Turbine Design

Why the difference between these designs?

Elf Eldridge (ECS) ENGR110 24 / 30

Page 25: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Wind Turbine Design

Why the difference between these designs?

Allows power generation in lower wind and/or from more directions.

Elf Eldridge (ECS) ENGR110 25 / 30

Page 26: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Geothermal Energy

Wairakei Geothermal Plant

Elf Eldridge (ECS) ENGR110 26 / 30

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Hylink

Elf Eldridge (ECS) ENGR110 27 / 30

Page 28: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Thermoelectric Generator (or cooler!)

Pretty much just solar cells for absorbing heat...

Typical efficiencies are between 5 and 8%

Elf Eldridge (ECS) ENGR110 28 / 30

Page 29: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Blue Smoke Refiller

Elf Eldridge (ECS) ENGR110 29 / 30

Page 30: Engineering Modeling and Design Elf*, Howard Lukefahr ... · PDF fileENGR110 T2 2017 Engineering Modeling and Design Elf*, Howard Lukefahr, Arthur Roberts School of Engineering and

Topic 2: Review Questions

Core: Why are alternative to solar cells investigated?Completion: Which of these might be most appropriate to power aschool in Maungaraki?Challenge: Which of these technologies would you choose toinvest in?

Elf Eldridge (ECS) ENGR110 30 / 30