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Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of...

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Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology
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Page 1: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Passive seismic reflection imaging,

on the earth and on the moon

Kees WapenaarDelft University of Technology

Page 2: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

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Structural trends in the subsurface of the Netherlands,with recent sources of seismicity (white circles) and contours of constant depth of the Mohorovic discontinuity (Beekman and Stephenson).

Page 3: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

25% of antennas in central core

High speed data transport

Antenna cluster (Station)

Central processor

X

Lofar / Persimmon(Permanent Seismic Imaging and Monitoring Network)

Page 4: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.
Page 5: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Test-site Exloo

Page 6: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Test-site Exloo

Page 7: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Experiments for Experiments for

optimaloptimalreceiverreceiver

responsesresponses

Zoomed-in dynamite Zoomed-in dynamite

recordings at :recordings at :- 12.5 m (left)12.5 m (left)- 6.25m (middle)6.25m (middle)- surface (right)surface (right)

Page 8: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Lofar / Persimmon(Permanent Seismic Imaging and Monitoring Network)

Partners:• Delft University of Technology• Free University of Amsterdam• Utrecht University• TNO-NITG• KNMI• NAM• Shell• MIT

Page 9: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Lofar / Persimmon(Permanent Seismic Imaging and Monitoring Network)

• Delft University of Technology Seismic Interferometric Imaging

Page 10: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Ax Bx

Ax Bx

Page 11: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Cross-correlation

Bx

Ax Bx

ABt

Ax Bx

ABt

ABt

Page 12: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Cross-correlation

Ax Bx

ABtCross-correlation result is equal to impulsive reflection response

Page 13: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Cross-correlation

Bx

Ax Bx

ABt

Ax Bx

ABt

ABt

Page 14: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Simplifying assumptions:

• Direct arrival at xA correlated with primary at xB

• Single diffractor• Primaries only• xA is the specular reflection point

Ax Bx

Page 15: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Ax Bx

ix

( , , ) A iT t x x ( , , ) B iT t x x

Page 16: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Ax Bx

ix

( , , ) ( , , ) ( ) ( )B A B A B AR t R t t x x x x x x

( , , ) ( , , ) A i B ii

T t T t x x x x

( , , )B AR t x x( , , ) A iT t x x ( , , ) B iT t x x

Page 17: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Ax Bx

( , , ) ( , ) ( , )B A obs A obs BR t T t T t x x x x

0 :t

( , , )B AR t x x

Page 18: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

1500 m/s

2000 m/s

Ax

Page 19: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

( , )obs AT t x

Ax

Page 20: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

( , , ) ( , , ) ( , , )B A obs A obs BR t T t T t x x x x x x

AxB Bx x B Bx xAxB Bx x B Bx x

( , )obs BT t x

Page 21: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

• Cross-correlation > one virtual source• Repeat for all receivers > many virtual sources• Imaging

Page 22: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Applications

• Persimmon • Basin analysis• Global seismology• Lunar seismology ?

Page 23: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Artist impression of reflection imaging of global seismology data

Page 24: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

receiver array

traveltime tomography

Cross-correlation oftransmission responses

source array

reflection imaging

Artist impression of reflection imaging of global seismology data

Page 25: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Applications

• Persimmon • Basin analysis• Global seismology• Lunar seismology ?

Page 26: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Here is a bit of background on the seismology of Moonquakes. The info comes from the book "EARTHQUAKES" by G.A. EIBY the retired superintendant of the New Zealand Seismological Observatory in Wellington city.

Page 27: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.
Page 28: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Three causes of lunar seismicity:• Impacts• Shallow: 0-60 km (crustal stresses)• Deep : 600 – 900 km (tidal forces)

Features:• ‘High’ frequency (0.1 – 1.0 Hz)• Small amplitudes (0.5 – 1.3 Richter) • Low damping• Long reverberations (~ 60 minutes)

Page 29: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

VectorSeis® Digital Sensor

- No tilt limitations

Page 30: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Frequency ResponseGeophone & VectorSeis® simultaneously shaken, table motion measured by Laser

Vibrometer, Geophone and VectorSeis outputs normalized to Vibrometer

-30

-25

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-15

-10

-5

0

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1 10 100

Frequency (Hz)

Am

plit

ud

e R

esp

on

se in

dB

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1 10 100Frequency (Hz)

Am

plit

ud

e R

esp

on

se in

dB

VectorSeis sensor maintains dynamic range at extreme low frequencies

LaserVibrometer

Geophone

VectorSeis

Page 31: Passive seismic reflection imaging, on the earth and on the moon Kees Wapenaar Delft University of Technology.

Applications

• Persimmon • Basin analysis• Global seismology• Lunar seismology ?


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