Top Banner
What drives the ice age cycles?
20

What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Mar 27, 2015

Download

Documents

Vanessa Davis
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

What drives the ice age cycles?

Page 2: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Milankovitch Theory of orbital forcing of ice sheets

Tilt variationseccentricity variationsprecession of perihelion

Page 3: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Axial Tilt

Page 4: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Axial Tilt

Page 5: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Eccentricity

Page 6: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Eccentricity

Page 7: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Precession of Solstices (or Perihelion)

Page 8: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Precession of Solstices

Page 9: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Precession

Page 10: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Precession & eccentricity

Page 11: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Changes in summer insolation

Page 12: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Changes in winter insolation

Page 13: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Low High Latitude NH summer insolation Allows ice sheets to grow from year to year

Page 14: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Milankovitch Theory:

Variations in high latitude (65 N) summer insolation combine with climate system feednack processes drives ice sheet growth and retreat on time scales of 10,000 yrs to 100,000 yrs.

Page 15: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Low insolation

High insolation

Page 16: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

Solar insolation

Surface temp

Ice volume

Ice height

albedo

Southern edge

Base ablation

Bedrocksinking

Page 17: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.
Page 18: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.

When high latitude NH summer insolation is below the threshold ice sheets grow slowly. When high latitude NH summer insolation is above the threshold ice sheets quickly retreat. a sawtooth pattern. Gradual buildup and rapid deglaciation.

Page 19: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.
Page 20: What drives the ice age cycles?. Milankovitch Theory of orbital forcing of ice sheets Tilt variations eccentricity variations precession of perihelion.