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Erschienen in: Environmental Earth Sciences 18/2016

01.09.2016 | Original Article

Investigation of the impacts of local-scale hydrogeologic conditions on sinkhole occurrence in East-Central Florida, USA

verfasst von: Han Xiao, Yong Je Kim, Boo Hyun Nam, Dingbao Wang

Erschienen in: Environmental Earth Sciences | Ausgabe 18/2016

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Abstract

Sinkholes occur when surface soils gradually subside or suddenly collapse into subsurface cavities and voids due to raveling and erosion of surficial soils caused by dissolution and washing-off of underlying soluble carbonate bedrock. Sinkhole occurrence is related to local-scale hydrogeologic conditions (groundwater recharge rate and hydraulic head difference between water table and potentiometric level). Historical data have shown that sinkholes are more likely to occur in the beginning of wet season and the frequency of occurrence varies seasonally. In this study, the East-Central Florida region, which is vulnerable to sinkhole hazard, is selected as the study area, and the relationships between temporal and spatial distributions of observed sinkholes and hydrogeologic conditions are quantitatively investigated. The analysis results indicate that the seasonality of sinkhole occurrence is due to the seasonal variation of rainfall and groundwater level, and sinkholes are most likely to occur when the local-scale head difference stays constant at a peak value after a sharp increase over a short period of time. In space, sinkhole density increases linearly with increases in groundwater recharge rate and hydraulic head difference.

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Literatur
Zurück zum Zitat Beck BF (1986) A generalized genetic framework for the development of sinkholes and Karst in Florida, USA. Environ Geol Water S 8:5–18CrossRef Beck BF (1986) A generalized genetic framework for the development of sinkholes and Karst in Florida, USA. Environ Geol Water S 8:5–18CrossRef
Zurück zum Zitat Brinkmann R (2013) Florida Sinkholes: science and policy. University Press of Florida, Gainesville Brinkmann R (2013) Florida Sinkholes: science and policy. University Press of Florida, Gainesville
Zurück zum Zitat Brinkmann R, Parise M (2009) The timing of sinkhole formation in Tampa and Orlando, Florida. Fla Geogr 41(41):22–38 Brinkmann R, Parise M (2009) The timing of sinkhole formation in Tampa and Orlando, Florida. Fla Geogr 41(41):22–38
Zurück zum Zitat Brinkmann R, Parise M, Dye D (2008) Sinkhole distribution in a rapidly developing urban environment: Hillsborough County, Tampa Bay area, Florida. Eng Geol 99(3–4):169–184CrossRef Brinkmann R, Parise M, Dye D (2008) Sinkhole distribution in a rapidly developing urban environment: Hillsborough County, Tampa Bay area, Florida. Eng Geol 99(3–4):169–184CrossRef
Zurück zum Zitat Chen J (1993) Relationship of karstification to groundwater quality: a study of sinkholes as contamination pathways in Brandon karst terrain. M.S. Thesis, University of South Florida Chen J (1993) Relationship of karstification to groundwater quality: a study of sinkholes as contamination pathways in Brandon karst terrain. M.S. Thesis, University of South Florida
Zurück zum Zitat Faulkner J, Hu BX, Kish S, Hua F (2009) Laboratory analog and numerical study of groundwater flow and solute transport in a karst aquifer with conduit and matrix domains. J Contam Hydrol 110:34–44CrossRef Faulkner J, Hu BX, Kish S, Hua F (2009) Laboratory analog and numerical study of groundwater flow and solute transport in a karst aquifer with conduit and matrix domains. J Contam Hydrol 110:34–44CrossRef
Zurück zum Zitat Fleury ES, Carson S, Brinkmann R (2008) Testing reporting bias in the Florida Sinkhole Database: an analysis of sinkhole occurrences in the Tampa Metropolitan statistical area. Southeastern Geogr 48(1):38–52CrossRef Fleury ES, Carson S, Brinkmann R (2008) Testing reporting bias in the Florida Sinkhole Database: an analysis of sinkhole occurrences in the Tampa Metropolitan statistical area. Southeastern Geogr 48(1):38–52CrossRef
Zurück zum Zitat Gray KM (2014) Central Florida sinkhole evaluation. Technical Publication, Florida Department of Transportation, District 5 Materials & Research Gray KM (2014) Central Florida sinkhole evaluation. Technical Publication, Florida Department of Transportation, District 5 Materials & Research
Zurück zum Zitat Gutierrez M (2013) Geomorphology. CRC Press, Boca Raton Gutierrez M (2013) Geomorphology. CRC Press, Boca Raton
Zurück zum Zitat Harbaugh AW, McDonald MG (1996) User’s documentation for MODFLOW-96—An update to the U.S. Geological Survey modular finite-difference groundwater flow model. Open-File Report 96-485. Reston, Virginia Harbaugh AW, McDonald MG (1996) User’s documentation for MODFLOW-96—An update to the U.S. Geological Survey modular finite-difference groundwater flow model. Open-File Report 96-485. Reston, Virginia
Zurück zum Zitat Jammal SE (1982) The Winter Park sinkhole and Central Florida Sinkhole Type Subsidence. Geotechnical engineering report submitted to the City of Winter Park, FL Jammal SE (1982) The Winter Park sinkhole and Central Florida Sinkhole Type Subsidence. Geotechnical engineering report submitted to the City of Winter Park, FL
Zurück zum Zitat Kuniansky EL (2014) Taking the mystery out of mathematical model applications to karst aquifers—a primer. In Kuniansky EL and Spangler LE (eds), U.S. Geological Survey karst interest group proceedings, Carlsbad, New Mexico, April 29–May 2, 2014, pp 69–81 Kuniansky EL (2014) Taking the mystery out of mathematical model applications to karst aquifers—a primer. In Kuniansky EL and Spangler LE (eds), U.S. Geological Survey karst interest group proceedings, Carlsbad, New Mexico, April 29–May 2, 2014, pp 69–81
Zurück zum Zitat Kuniansky EL, Bellino JC (2016) Tabulated transmissivity and storage properties of the Floridan and parts of Georgia, South Carolina, and Alabama (ver. 1.1, May 2016): U.S. Geological Survey Data Series 669, 37 p., http://pubs.usgs.gov/ds/669 Kuniansky EL, Bellino JC (2016) Tabulated transmissivity and storage properties of the Floridan and parts of Georgia, South Carolina, and Alabama (ver. 1.1, May 2016): U.S. Geological Survey Data Series 669, 37 p., http://​pubs.​usgs.​gov/​ds/​669
Zurück zum Zitat Kuniansky EL, Halford KJ, Shoemaker WB (2008) Permeameter data verify new turbulence process for MODFLOW. Groundwater 46(5):768–771CrossRef Kuniansky EL, Halford KJ, Shoemaker WB (2008) Permeameter data verify new turbulence process for MODFLOW. Groundwater 46(5):768–771CrossRef
Zurück zum Zitat Kuniansky EL, Bellino JC, Dixon JF (2012) Transmissivity of the Upper Floridan aquifer in Florida and parts of Georgia, South Carolina, and Alabama: U.S. Geological Survey Scientific Investigations Map 3204, 1 sheet, scale 1:100,000. http://pubs.usgs.gov/sim/3204 Kuniansky EL, Bellino JC, Dixon JF (2012) Transmissivity of the Upper Floridan aquifer in Florida and parts of Georgia, South Carolina, and Alabama: U.S. Geological Survey Scientific Investigations Map 3204, 1 sheet, scale 1:100,000. http://​pubs.​usgs.​gov/​sim/​3204
Zurück zum Zitat Kuniansky EL, Weary DJ, Kaufmann JE (2015) The current status of mapping karst areas and availability of public sinkhole-risk resources in karst terrains of the United States. Hydrogeol J 24(3):613–624CrossRef Kuniansky EL, Weary DJ, Kaufmann JE (2015) The current status of mapping karst areas and availability of public sinkhole-risk resources in karst terrains of the United States. Hydrogeol J 24(3):613–624CrossRef
Zurück zum Zitat Lindsey BD, Katz BG, Berndt MP, Ardis AF, Skach KA (2010) Relations between sinkhole density and anthropogenic contaminants in selected carbonate aquifers in the eastern Unites States. Environ Earth Sci 60:1073–1090CrossRef Lindsey BD, Katz BG, Berndt MP, Ardis AF, Skach KA (2010) Relations between sinkhole density and anthropogenic contaminants in selected carbonate aquifers in the eastern Unites States. Environ Earth Sci 60:1073–1090CrossRef
Zurück zum Zitat McGurk B, Presley PF (2002) Simulation of the effects of groundwater withdrawals on the Floridan aquifer system in East-Central Florida: model expansion and revision. St. Johns River Water Management District Technical Publication, SJ2002-5 McGurk B, Presley PF (2002) Simulation of the effects of groundwater withdrawals on the Floridan aquifer system in East-Central Florida: model expansion and revision. St. Johns River Water Management District Technical Publication, SJ2002-5
Zurück zum Zitat Miller JA (1986) Hydrogeologic framework of the Floridan aquifer system in Florida and in parts of Georgia, Alabama, and South Carolina. U.S. Geological Survey Professional Paper 1403-B Miller JA (1986) Hydrogeologic framework of the Floridan aquifer system in Florida and in parts of Georgia, Alabama, and South Carolina. U.S. Geological Survey Professional Paper 1403-B
Zurück zum Zitat Rupert F, Spencer S (2004) Florida’s sinkholes Poster 11. Florida Geological Survey. Florida Department of Environmental Protection, Tallahassee Rupert F, Spencer S (2004) Florida’s sinkholes Poster 11. Florida Geological Survey. Florida Department of Environmental Protection, Tallahassee
Zurück zum Zitat Scanlon BR, Mace RE, Barrett ME, Smith B (2003) Can we simulate regional groundwater flow in a karst system using equivalent porous media models? Case study, Barton Springs Edwards aquifer, USA. J Hydrol 276:137–158CrossRef Scanlon BR, Mace RE, Barrett ME, Smith B (2003) Can we simulate regional groundwater flow in a karst system using equivalent porous media models? Case study, Barton Springs Edwards aquifer, USA. J Hydrol 276:137–158CrossRef
Zurück zum Zitat Schiffer DM (1996) Hydrology of central Florida lakes—a primer. U.S. Geological Survey Open-File Report 96-412, Tallahassee, Florida Schiffer DM (1996) Hydrology of central Florida lakes—a primer. U.S. Geological Survey Open-File Report 96-412, Tallahassee, Florida
Zurück zum Zitat Sepulveda N, Tiedeman CR, O’Reilly AM, Davis JB, Burger P (2012) Groundwater Flow and Water Budget in the Surficial and Floridan Aquifer Systems in East-Central Florida. U.S. Geological Survey Scientific Investigation Report 2012–5161 Sepulveda N, Tiedeman CR, O’Reilly AM, Davis JB, Burger P (2012) Groundwater Flow and Water Budget in the Surficial and Floridan Aquifer Systems in East-Central Florida. U.S. Geological Survey Scientific Investigation Report 2012–5161
Zurück zum Zitat Shoemaker WB, Kuniansky EL, Birk S, Bauer S, Swain ED (2008) Documentation of a conduit flow process (CFP) for MODFLOW-2005: U.S. Geological Survey Techniques and Methods, Book 6, Chapter A24 Shoemaker WB, Kuniansky EL, Birk S, Bauer S, Swain ED (2008) Documentation of a conduit flow process (CFP) for MODFLOW-2005: U.S. Geological Survey Techniques and Methods, Book 6, Chapter A24
Zurück zum Zitat Sinclair WC, Stewart JW (1985) Sinkhole type, development, and distribution in Florida. Map Series No. 110. Florida Department of Natural Resources, Bureau of Geology, Tallahassee, Florida Sinclair WC, Stewart JW (1985) Sinkhole type, development, and distribution in Florida. Map Series No. 110. Florida Department of Natural Resources, Bureau of Geology, Tallahassee, Florida
Zurück zum Zitat Tibbals CH (1990) Hydrology of the Floridan aquifer system in east-central Florida—regional aquifer system analysis—Floridan aquifer system. U.S Geological Survey professional paper 1403-E Tibbals CH (1990) Hydrology of the Floridan aquifer system in east-central Florida—regional aquifer system analysis—Floridan aquifer system. U.S Geological Survey professional paper 1403-E
Zurück zum Zitat Tihansky AB (1999) Sinkholes, West-Central Florida. In Galloway D, Jones DR, Ingebritsen SE (ed) Land subsidence in the United States. U.S Geological Survey Circular 1182, pp 121–140 Tihansky AB (1999) Sinkholes, West-Central Florida. In Galloway D, Jones DR, Ingebritsen SE (ed) Land subsidence in the United States. U.S Geological Survey Circular 1182, pp 121–140
Zurück zum Zitat Waltham T, Bell FG, Gulshaw M (2005) Sinkholes and subsidence: Karst and cavernous rocks in engineering and construction. Springer-Praxis Books in Geophysical Sciences. Springer, Heidelberg Waltham T, Bell FG, Gulshaw M (2005) Sinkholes and subsidence: Karst and cavernous rocks in engineering and construction. Springer-Praxis Books in Geophysical Sciences. Springer, Heidelberg
Zurück zum Zitat Williams LJ, Kuniansky EL (2016) Revised hydrogeologic framework of the Floridan aquifer system in Florida and parts of Georgia, Alabama, and South Carolina (ver. 1.1, March 2016): U.S. Geological Survey Professional Paper 1807, 23 pls. doi: 10.3133/pp1807 Williams LJ, Kuniansky EL (2016) Revised hydrogeologic framework of the Floridan aquifer system in Florida and parts of Georgia, Alabama, and South Carolina (ver. 1.1, March 2016): U.S. Geological Survey Professional Paper 1807, 23 pls. doi: 10.3133/pp1807
Zurück zum Zitat Wilson WL, Beck BF (1992) Hydrogeologic factors affecting new sinkhole development in the Orlando area, Florida. Groundwater 30(6):918–930CrossRef Wilson WL, Beck BF (1992) Hydrogeologic factors affecting new sinkhole development in the Orlando area, Florida. Groundwater 30(6):918–930CrossRef
Zurück zum Zitat Wilson WL, Shock EJ (1996) New sinkhole data spreadsheet manual (v1.1). Subsurface evaluations, Winter Springs Wilson WL, Shock EJ (1996) New sinkhole data spreadsheet manual (v1.1). Subsurface evaluations, Winter Springs
Zurück zum Zitat Wilson WL, McDonald KM, Barfus BL, Beck BF (1987) Hydrogeologic factors associated with recent sinkhole development in the Orlando area, Florida. Florida Sinkhole Research Institute, University of Central Florida, Orlando, Report No. 87-88-3 Wilson WL, McDonald KM, Barfus BL, Beck BF (1987) Hydrogeologic factors associated with recent sinkhole development in the Orlando area, Florida. Florida Sinkhole Research Institute, University of Central Florida, Orlando, Report No. 87-88-3
Zurück zum Zitat Zhou Y, Li W (2011) A review of regional groundwater flow modeling. Geosci Front 2(2):205–214CrossRef Zhou Y, Li W (2011) A review of regional groundwater flow modeling. Geosci Front 2(2):205–214CrossRef
Metadaten
Titel
Investigation of the impacts of local-scale hydrogeologic conditions on sinkhole occurrence in East-Central Florida, USA
verfasst von
Han Xiao
Yong Je Kim
Boo Hyun Nam
Dingbao Wang
Publikationsdatum
01.09.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Environmental Earth Sciences / Ausgabe 18/2016
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-016-6086-3

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