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Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal...

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Mountain Building and Crustal Deformation
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Page 1: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Mountain Building and Crustal Deformation

Page 2: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Economic Consequences of Geologic Structures

• Tracing Coal Seams, Aquifers, etc.

• Ore Deposits are often localized along faults and folds

• Petroleum Traps

Page 3: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Isostasy

Page 4: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Thickness and Density

Page 5: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Isostatic Rebound in

Canada

Page 6: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Mountain Building (Orogeny)

Orogeny is the variety of processes that occur during mountain-building, including:

• Distinctive Patterns of Deposition • Deformation • Metamorphism • Intrusions • Volcanic Activity • Oceanic Trenches • Seismic Activity

Page 7: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

A Subduction Zone

Page 8: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Metamorphism and Orogeny

Page 9: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Why Mountains are High

Page 10: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

How Fast Can Folds Form?

Page 11: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Hutton’s Unconformity, Scotland

Page 12: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Large Fold, Turkey

Page 13: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Eroded Fold, Pennsylvania

Page 14: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Fold in Glacier, Antarctica

Page 15: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Anticlines and

Synclines

Page 16: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Folds, Pennsylvania

Page 17: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Which Way was Up?

Sedimentary Structures are governed by:

• Gravity

• Exposure to the Surface

They all have a “right way up”

Page 18: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Foliation

Foliation is a sheetlike structure that forms when rocks are deformed.

Page 19: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Foliation

In every case, the foliation is:

• In the direction of least resistance

• at right angles to the direction of greatest compression.

Page 20: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Axial Plane

Page 21: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Folds and Foliation

Page 22: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Folds and Foliation

• On a small scale (microscopic to centimeters), foliation forms

• On a large scale (centimeters to kilometers), rocks fold.

• Both foliation and the axial plane of the fold are at right angles to the direction of greatest compression.

Page 23: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Fold And Foliation

Page 24: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Growth of Minerals

Page 25: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

The Importance of Minor Folds

Page 26: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Minor Folds and Foliation Are Clues to Much Larger

Structures

Page 27: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

How Geologists Use These Clues

• Here's an outcrop that might be seen in the field.

Page 28: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

How Geologists Use These Clues

• We can mentally fill out the rest of the fold.

• Note that we still have no idea how big the fold is, only what kind it is.

Page 29: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Complex Folds, ScotlandComplex Folds, Scotland

Page 30: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Complex Folds, Scotland

Page 31: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Faults, Appalachians

Page 32: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Thrust Faults in Snow

Page 33: Mountain Building and Crustal Deformation. Economic Consequences of Geologic Structures Tracing Coal Seams, Aquifers, etc. Ore Deposits are often localized.

Domes and Basins


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