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Modern Seismic Concepts For Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN TEEC, Germany
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Modern Seismic Concepts For Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN

Jan 01, 2016

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Modern Seismic Concepts For Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN TEEC, Germany. Modern Seismic Concepts For Geothermal Projects. Outline Seismic porosity & facies prediction Fracture prediction Cost efficient 3D seismic data aquisition. 1. 2. 3. 4. 5. - PowerPoint PPT Presentation
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Page 1: Modern Seismic Concepts For  Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN

Modern Seismic Concepts For Geothermal Projects

TRAPPE, GIERSE, FREHERS, PRUESSMANNTEEC, Germany

Page 2: Modern Seismic Concepts For  Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN

Outline

Seismic porosity & facies prediction

Fracture prediction

Cost efficient 3D seismic data aquisition

Modern Seismic Concepts For Geothermal Projects

Page 3: Modern Seismic Concepts For  Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN

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neuroTEEC seismic facies classification

Page 4: Modern Seismic Concepts For  Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN

cohTEEC coherency processing

Size: 21 x 11 km

Page 5: Modern Seismic Concepts For  Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN

Size: 6 x 7 km

cohTEEC coherency processing

Page 6: Modern Seismic Concepts For  Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN

Experiment 1: Point source at NIP:- Emergence angle α- Wavefront curvature RNIP

Experiment 2: Exploding reflector R:- Emergence angle α- Wavefront curvature RN

(Mann et al., 1999)

NIP =

Normal Incidence Point

RNIPRN

R =

Reflectorsegment

CRS theory

Page 7: Modern Seismic Concepts For  Geothermal Projects TRAPPE, GIERSE, FREHERS, PRUESSMANN

DMO / CRS subset 3

CRS (2 s+r-line)DMO