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Ground Penetrating Radar 1

Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

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Page 1: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Ground Penetrating Radar

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Page 2: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Motivation

Rock glacier

Salt Water Intrusions

FreshSaline

Sink holes

Archeology Underground tank

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Page 3: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Outline

• Basic experiment

• Physical property

• Physics

• Data and Processing

• Case history: rock glacier

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Page 4: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Basic Experiment

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Page 5: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Basic Equations

* Solve with sources and boundary conditions

Time Frequency

Faraday’sLaw

r⇥ e = � @b

@tr⇥E = � i!B

Ampere’sLaw

ConstitutiveRelationships(non-dispersive)

r ·B = 0

J = �E

No MagneticMonopoles

j = �e

r · b = 0

b = µh

d = "e

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Page 6: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Basic Equations: Wave EquationFirst order equations

Second order equations

* Same equation holds for E

diffusion wave propagation

In frequency

r⇥ e = � @b

@tj = �e

b = µh

d = "e

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Page 7: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Physical properties

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Page 8: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Attenuation: Skin Depth

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Page 9: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Electric Dipole in a Whole Space

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105 Hz 106 Hz

Page 10: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Waves and Rays

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Page 11: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Waves and Rays

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123

Page 12: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Processing Stacking

Gain Control

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Page 13: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Radargrams

Hyperbolaslope ~ 2/v 13

Page 14: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Radargrams

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Page 15: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

GPR systems

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Page 16: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Outline

• Basic experiment• Physical property• Physics • Data and Processing

• Questions?

• Case history: rock glacier

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Page 17: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Case History: Furggwanghorn

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Merz et al, 2015

Page 18: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Setup• Downslope movement shown to increase from 1.5 m/yr to 4.0 m/yr.• Aim: characterize rock units and evolution of glacier• Surface GPR: unsuccessful (too close to scatterers)• Helicopter GPR used

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Page 19: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Properties

Velocity from cross well GPR

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Material Velocity (!/#$)(a & b) Unconsolidated sediments > 140

(c) Ice > 140

(d) Ice + partial melt 110 - 130

(e) Compact debris 130 – 140

Saturated sediments 80 -100

Bedrock 110 -130

Page 20: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Survey

Ground-GPR Heli-GPR Survey lines

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• Initial Ground-Based Survey– 2 systems– Frequencies: 25 MHz and 50 MHz

• Heli-GPR– Frequency: 60 MHz– Flight height: 15-20 m– Line separation ~15 m

Page 21: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Data and Processing

Raw

Filtered

Final Processed

Ground-GPR Heli-GPR

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Page 22: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Interpretation

Bedrock surface

Major shear zone between ice-rich and ice-poor regions

Fault zone boundaries of rock lobes

Profile along line H4

Profile along line H5

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Page 23: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

SynthesisFinal Structural and Kinematic Model

• Interpreted with thin-skinned tectonic model

• Major shear zone acts as a décollment

• Rock glacier lobes act as nappes

• Lobes appear to move down-slope

• Tectonic model applicable to other glaciers

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Page 24: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

Summary

• Basic experiment

• Physical property

• Physics

• Data and Processing

• Case history: rock glacier

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Page 25: Ground Penetrating Radar · Ground Penetrating Radar 1. Motivation Rock glacier Salt Water Intrusions Fresh Saline Sink holes Archeology Underground tank 2. Outline • Basic experiment

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End of GPR

Lunch: Play with apps

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