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Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton
33

Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Dec 28, 2015

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Leo Atkins
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Page 1: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Daisyworld & Feedback EffectsKump Chapter 2Tark Hamilton

Page 2: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.
Page 3: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.
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Average Climate Response of the 5 Largest Volcanic Eruptions (1883-1991)

Krakatau (1883), Santa Maria (1902), Agung (1963), El Chichón (1982), Pinatubo (1991)

Page 11: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Mt. Pinatubo Luzon, Philippines

June 12, 1991-3days VEI=6 Event

10 km3 of tephra 20 Mtons of SO2

-0.5°C coolingO3 depletion

Page 12: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

SO2 Aerosols block sunlight

Arc Volcanoes with subducted or sediment contamination are worst

Page 13: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.
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Page 17: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Negative Feedback:

Equilibrium is Some Daisys &

Some Dirt!

Page 18: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.
Page 19: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Designing Graphs: Data Display (measurements points, details) versus

Concepts (general trends)(both are auto-scaled to show the range of variation)

Daily Temperature Variation

Page 20: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.
Page 21: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.
Page 22: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Systems Diagram

Graphic for how Surface Temperature Affects Daisy

Coverage

Page 23: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Two Forcing Functions: Surface

Temperature on Daisies (Curve) vs Daisys on Surface Temperature

(line)

& Equilibrium Diagram: P1 stable versus P2 unstable

Page 24: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.
Page 25: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.
Page 26: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Negative Feedback is Stable Equilibrium

Positive Feedback is unstable, runaway heating

Page 27: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Increased Solar

Luminosity increases

heat at constant

Daisy Coverage

Page 28: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Increasing Solar Luminosity Shifts Equilibria, while White Daisys still

reflect heat the same way: i.e. Just different stable %

coverage

Page 29: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Response of Daisyworld to Luminosity

ΔTeq = ΔT0 + ΔTf

Where: ΔT0 w/o feedback

ΔTeq < ΔT0

and ΔTf < 0

Page 30: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

P1 shifts because of negative feedback

Page 31: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

a) Daisyworld’s response to Increased

Luminosity (neg. feedback on T°C)

b) Lifeless Planet with fixed albedo

Page 32: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.
Page 33: Daisyworld & Feedback Effects Kump Chapter 2 Tark Hamilton.

Captain Kirk

would never have

expected the blue curve!