Linking Deltaic Distributary Morphodynamics Networks to Stratigraphic Connectivity of Channel Bodies

Linking Deltaic Distributary Morphodynamics Networks to Stratigraphic Connectivity of Channel Bodies

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OVERALL, THERE IS EXTREMELY HIGH CONNECTIVITY IN THIS SYSTEM

11 of 15

11 of 15

OVERALL, THERE IS EXTREMELY HIGH CONNECTIVITY IN THIS SYSTEM

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Linking Deltaic Distributary Morphodynamics Networks to Stratigraphic Connectivity of Channel Bodies

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  1. 1 LINKING MORPHODYNAMICS OF DELTAIC DISTRIBUTARY NETWORKS TO STRATIGRAPHIC CONNECTIVITY OF CHANNEL BODIES
  2. 2 A USEFUL TOOL: EXPERIMENTAL DELTAS
  3. 3 IN ORDER TO PREDICT STRATIGRAPHY WE NEED TO KNOW
  4. 4 TO BUILD SYNTHETIC STRATIGRAPHY
  5. 5 IMAGERY IS MORE READILY AVAILABLE THAN TOPOGRAPHIC DATA
  6. 6 CHANNEL NETWORKS
  7. 7 CHANNEL DEPTH
  8. 8 BUILDING SYNTHETIC STRATIGRAPHY
  9. 9 LARGE-SCALE STRUCTURE WELL CHARACTERIZED
  10. 10 QUANTIFYING SANDBODY CONNECTIVITY
  11. 11 OVERALL, THERE IS EXTREMELY HIGH CONNECTIVITY IN THIS SYSTEM
  12. 12 BARRIER DIMENSIONS
  13. 13 BARRIER WIDTH AFFECTS PERMEABILITY AND SOLUTE SPREADING
  14. 14 CAN WE USE SURFACE INFORMATION TO PREDICT SUBSURFACE ARCHITECTURE?
  15. 15 LARGE SCALE STRUCTURE CONTROLLED BY CHANNEL LOCATION

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