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Sinkholes

Sinkholes. Lecture 28. Subsidence. The downward (vertical) sinking of earth materials. It is caused by:. Compaction of recently deposited sediment Shrinking of expansive soils Deflation of magma chambers Earthquakes Thawing of frozen ground. Human-induced subsidence is caused by:.

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Sinkholes

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  1. Sinkholes Lecture 28

  2. Subsidence • The downward (vertical) sinking of earth materials.

  3. It is caused by: • Compaction of recently deposited sediment • Shrinking of expansive soils • Deflation of magma chambers • Earthquakes • Thawing of frozen ground

  4. Human-induced subsidence is caused by: • Withdrawal of fluids from subsurface reservoirs (water, oil) • Collapse of soil and rock over subsurface holes (underground mines) • Draining of wetlands causing the oxidation of organic soils

  5. Sinkholes and Subsidence • Sinkholes • Solutional • Collapse • Subsidence • Sediment and Soil Compaction • Collapse soils • Fine Sediment • Expansive Soils • Tectonism • Permafrost • Lava Tubes

  6. Karst • Certain rocks are water-soluble, particularly those with gypsum and salt. • Limestone and other carbonate rocks need acidic water for sinkholes to develop (karst terrain) • More than 40% of the humid USA east of Oklahoma is underlain by such rock

  7. 4. Erosion by Groundwater: Karst

  8. Erosion by Groundwater: Carlsbad Caverns, New Mexico

  9. Erosion by Groundwater: Sinkhole

  10. Sinkhole, Jan 2005, Carbondale, Colorado. On the northern limit of a swarm of sinkholes. The underlying bedrock is evaporite (e.g., gypsum, anhydrite, siltstone and halite). Two electric golf carts, stored under the structure, disappeared into the sinkhole.

  11. Karst terrain • Areas underlain by limestone or dolostone. • Susceptible to dissolution by acidic rainwater (carbonic acid) • H2O + CO2 = H2CO3 (carbonic acid in water) • Areas underlain by jointed rock are especially vulnerable.

  12. Sinkholes • Come in a variety of scales. • Some may be individuals. • Others occur in large numbers forming a pockmarked plain known as a karst plain. Minnesota

  13. Karst plain, Arizona

  14. Tower Karst • Many karst areas underlain by extensive cave systems. • In humid regions, less soluble material is left behind, creating tower karst.

  15. Solutional and collapse sinkholes • Solutional sinkholes: • Form by dissolution as acidic groundwater is concentrated in holes associated with joints. • Collapse sinkholes • Most common type: develop by collapse of near surface material into part of an underground cavern systems. Can be spectacular

  16. Hazards? • Easily polluted water supplies • Rapid water flow and little filtration. Point source pollution drains rapidly to drinking water source. • Three municipal sewage lagoons have collapsed in southeastern Minnesota, sending millions of gallons of sewage to the aquifer! • And what about…manure storage areas; feedlot runoff… • Loss of buildings and infrastructure

  17. Collapse of dissolving bedrock Florida

  18. Sierra Karst

  19. Sierra Karst

  20. Sierra Karst

  21. Sinkholes • The sudden and sometimes catastrophic collapse may be triggered by groundwater declines caused by pumping • The high solubility of salt and gypsum permit cavities to form in days to years • Carbonate bedrock: slow process- centuries to millennia • Human activities expedite cavity formation

  22. Sinkholes in urban areas and transportation corridors, N. Carolina

  23. Many sinkholes are interspersed between homes

  24. Going, going….

  25. Sinkhole at Winter park, Florida, 1981. Occurred in a single day. It was sealed and converted to an urban lake.

  26. Other Karst • Disappearing Streams • Karst Springs • Tower Karst

  27. Disappearing Streams

  28. Karst Springs

  29. Tower Karst

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