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2020 | OriginalPaper | Buchkapitel

13. ASR and Aquifer Recharge Using Wells

verfasst von : Robert G. Maliva

Erschienen in: Anthropogenic Aquifer Recharge

Verlag: Springer International Publishing

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Abstract

Managed aquifer recharge (MAR) using wells includes aquifer storage and recovery (ASR; local storage of water by injection and recovery using often the same well), aquifer recharge using wells (injection intended to increase aquifer water levels or improve water quality), and vadose or dry wells. ASR systems commonly store freshwater in brackish or saline aquifers and are evaluated in terms of their recovery efficiency; the percentage of the injected water that can be recovered at a useable quality. Numerous modeling studies and reviews of field data have been performed to elucidate the hydrogeological controls over recovery efficiency. Poor recovery efficiency may be caused by high native groundwater salinities and high degrees of aquifer heterogeneity. Gravity drainage wells are used for stormwater management and aquifer recharge. Key design and operational issues are avoiding groundwater contamination and managing well clogging.

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Literatur
Zurück zum Zitat Al-Rashed, M. F., & Sherif, M. M. (2000). Water resources in the GCC countries: An overview. Water Resources Management, 14, 59–75.CrossRef Al-Rashed, M. F., & Sherif, M. M. (2000). Water resources in the GCC countries: An overview. Water Resources Management, 14, 59–75.CrossRef
Zurück zum Zitat Baker, J. L., Kanwar, R. S., & Austin, T. A. (1985). Impact of agricultural drainage wells on groundwater quality. Journal of Soil and Water Conservation, 40(6), 516–520. Baker, J. L., Kanwar, R. S., & Austin, T. A. (1985). Impact of agricultural drainage wells on groundwater quality. Journal of Soil and Water Conservation, 40(6), 516–520.
Zurück zum Zitat Bakker, M. (2010). Radial Dupuit interface flow to assess the aquifer storage and recovery of saltwater aquifer. Hydrogeology Journal, 18(1), 107–115.CrossRef Bakker, M. (2010). Radial Dupuit interface flow to assess the aquifer storage and recovery of saltwater aquifer. Hydrogeology Journal, 18(1), 107–115.CrossRef
Zurück zum Zitat Barry, K., & Dillon, P. (2006). Domestic-scale ASR with rainwater at Kingswood, South Australia. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, 11–16 June 2005 (pp. 656–662). Paris: UNESCO. Barry, K., & Dillon, P. (2006). Domestic-scale ASR with rainwater at Kingswood, South Australia. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, 11–16 June 2005 (pp. 656–662). Paris: UNESCO.
Zurück zum Zitat Barry, K., Dillon, P., & Pavelic, P. (2007). Mixing and clogging constraints on domestic-scale ASR at Kingswood, South Australia. In P. Fox (Ed.), Management of aquifer recharge for sustainability. Proceedings of the 6th International Symposium on Managed Aquifer Recharge of Groundwater (pp. 61–73). Phoenix: Acacia Publishing. Barry, K., Dillon, P., & Pavelic, P. (2007). Mixing and clogging constraints on domestic-scale ASR at Kingswood, South Australia. In P. Fox (Ed.), Management of aquifer recharge for sustainability. Proceedings of the 6th International Symposium on Managed Aquifer Recharge of Groundwater (pp. 61–73). Phoenix: Acacia Publishing.
Zurück zum Zitat Bouwer, H., Pyne, R. D. G., Brown, J., St Germain, D., Morris, T. M., Brown, C. J., et al. (2008). Design, operation and maintenance for sustainable underground storage facilities. Denver: AWWA Research Foundation. Bouwer, H., Pyne, R. D. G., Brown, J., St Germain, D., Morris, T. M., Brown, C. J., et al. (2008). Design, operation and maintenance for sustainable underground storage facilities. Denver: AWWA Research Foundation.
Zurück zum Zitat Brown, C. J. (2005). Planning decision framework for brackish water aquifer, storage and recovery projects (unpublished Ph.D. dissertation). Gainesville, University of Florida. Brown, C. J. (2005). Planning decision framework for brackish water aquifer, storage and recovery projects (unpublished Ph.D. dissertation). Gainesville, University of Florida.
Zurück zum Zitat Brown, C. J. (2006). Operational considerations and recommendations for the Everglades restoration ASR scheme. Journal of Environmental Hydrology, 14, 1–13. Brown, C. J. (2006). Operational considerations and recommendations for the Everglades restoration ASR scheme. Journal of Environmental Hydrology, 14, 1–13.
Zurück zum Zitat Campbell, B. G., Conlon, K. J., Mirecki, J. E., & Petkewich, M. D. (1997). Evaluation of aquifer storage recovery in the Santee Limestone/Black Mingo Aquifer, near Charleston, South Carolina, 1993–1995. U.S. Geological Survey Water-Resources Investigations Report 96-4283. Campbell, B. G., Conlon, K. J., Mirecki, J. E., & Petkewich, M. D. (1997). Evaluation of aquifer storage recovery in the Santee Limestone/Black Mingo Aquifer, near Charleston, South Carolina, 1993–1995. U.S. Geological Survey Water-Resources Investigations Report 96-4283.
Zurück zum Zitat Castro, J. E. (1995). Aquifer storage and recovery, Myrtle Beach, South Carolina, Phase II: A hydrologic, geochemical and economic investigation, Report 7. Columbia, SC: South Carolina Water Resources Division. Castro, J. E. (1995). Aquifer storage and recovery, Myrtle Beach, South Carolina, Phase II: A hydrologic, geochemical and economic investigation, Report 7. Columbia, SC: South Carolina Water Resources Division.
Zurück zum Zitat Castro, J. E., & Gardner, L. R. (1997). A geochemical model for aquifer storage and recovery project at Myrtle Beach, SC. In D. R. Kendall (Ed.), Conjunctive use of water resources: Aquifer storage and recovery, Proceedings AWRA Symposium, Long Beach, California (pp. 201–210). Middleburg, VA: American Water Resources Association. Castro, J. E., & Gardner, L. R. (1997). A geochemical model for aquifer storage and recovery project at Myrtle Beach, SC. In D. R. Kendall (Ed.), Conjunctive use of water resources: Aquifer storage and recovery, Proceedings AWRA Symposium, Long Beach, California (pp. 201–210). Middleburg, VA: American Water Resources Association.
Zurück zum Zitat Cederstrom, D. J. (1947). Artificial recharge of a brackish water well. Commonwealth, Virginia Chamber of Commerce, 12(12), 31, 71–73. Cederstrom, D. J. (1947). Artificial recharge of a brackish water well. Commonwealth, Virginia Chamber of Commerce, 12(12), 31, 71–73.
Zurück zum Zitat Cederstrom, D. J. (1957). Geology and ground-water resources of the York, James Peninsula, Virginia. U.S. Geological Survey Water-Supply Paper 1361. Cederstrom, D. J. (1957). Geology and ground-water resources of the York, James Peninsula, Virginia. U.S. Geological Survey Water-Supply Paper 1361.
Zurück zum Zitat CH2M Hill. (1997a). Water supply needs and sources assessment, alternative water supply strategies investigation. A tool for assessing the feasibility of aquifer storage recovery, Special Publication SJ97-SP4. Palatka: St. Johns River Water Management. CH2M Hill. (1997a). Water supply needs and sources assessment, alternative water supply strategies investigation. A tool for assessing the feasibility of aquifer storage recovery, Special Publication SJ97-SP4. Palatka: St. Johns River Water Management.
Zurück zum Zitat CH2M Hill. (1997b). Water Supply Needs and Sources Assessment Alternative Water Supply Strategies Investigation: Artificial recharge of the Floridan Aquifer through drainage or injection wells in Orange and Seminole counties, Special Publication SJ97-SP14. Palatka: St Johns River Water Management District. CH2M Hill. (1997b). Water Supply Needs and Sources Assessment Alternative Water Supply Strategies Investigation: Artificial recharge of the Floridan Aquifer through drainage or injection wells in Orange and Seminole counties, Special Publication SJ97-SP14. Palatka: St Johns River Water Management District.
Zurück zum Zitat CH2M Hill. (1998). Central Florida artificial recharge demonstration program: Alternative water supply strategies in the St Johns River Water Management District. SJWRWD Special Publication SJ98-SP11. Palatka: St. Johns River Water Management District. CH2M Hill. (1998). Central Florida artificial recharge demonstration program: Alternative water supply strategies in the St Johns River Water Management District. SJWRWD Special Publication SJ98-SP11. Palatka: St. Johns River Water Management District.
Zurück zum Zitat Culkin, S. L., Singha, K., & Day-Lewis, F. D. (2008). Implications of rate-limited mass transfer for aquifer storage and recovery. Ground Water, 46, 591–605.CrossRef Culkin, S. L., Singha, K., & Day-Lewis, F. D. (2008). Implications of rate-limited mass transfer for aquifer storage and recovery. Ground Water, 46, 591–605.CrossRef
Zurück zum Zitat Diersch, H. J. (1998). FEFLOW: Interactive, graphics-based finite-element simulation system for modeling groundwater flow, contaminant mass and heat transport processes, User’s Manual, Reference Manual, Version 4.6. Berlin, Germany: WASY, Institute for Water Resources Planning and System Research Ltd. Diersch, H. J. (1998). FEFLOW: Interactive, graphics-based finite-element simulation system for modeling groundwater flow, contaminant mass and heat transport processes, User’s Manual, Reference Manual, Version 4.6. Berlin, Germany: WASY, Institute for Water Resources Planning and System Research Ltd.
Zurück zum Zitat Dillon, P., & Molloy, R. (2006). Developing aquifer storage and recovery (ASR) opportunities in Melbourne, Technical guidance for ASR (Client Report prepared for the Smart Water Fund). Canberra: CSIRO Land Water. Dillon, P., & Molloy, R. (2006). Developing aquifer storage and recovery (ASR) opportunities in Melbourne, Technical guidance for ASR (Client Report prepared for the Smart Water Fund). Canberra: CSIRO Land Water.
Zurück zum Zitat Eccleston, B. L., & Harhash, I. E. (1982). The hydro-geology of Qatar, Water Resources and Agricultural Development Project Phase III. Qatar: Ministry of Industry and Agriculture. Eccleston, B. L., & Harhash, I. E. (1982). The hydro-geology of Qatar, Water Resources and Agricultural Development Project Phase III. Qatar: Ministry of Industry and Agriculture.
Zurück zum Zitat Esmail, O. J., & Kimbler, O. K. (1967). Investigation of the technical feasibility of storing freshwater in saline aquifers. Water Resources Research, 3, 683–695.CrossRef Esmail, O. J., & Kimbler, O. K. (1967). Investigation of the technical feasibility of storing freshwater in saline aquifers. Water Resources Research, 3, 683–695.CrossRef
Zurück zum Zitat Fournier, L. B. (2005). Horizontal wells in water supply applications. Water Well Journal, 59(6), 34–36. Fournier, L. B. (2005). Horizontal wells in water supply applications. Water Well Journal, 59(6), 34–36.
Zurück zum Zitat Gale, I. N., Williams, A. T., Gaus, I., & Jones, N. K. (2002). ASR—UK: Elucidating the hydrogeologic issues associated with aquifer storage and recovery in the UK. UK Water Industry Research Report Ref. No. 02/WR/09/2. Nottingham: British Geological Survey. Gale, I. N., Williams, A. T., Gaus, I., & Jones, N. K. (2002). ASR—UK: Elucidating the hydrogeologic issues associated with aquifer storage and recovery in the UK. UK Water Industry Research Report Ref. No. 02/WR/09/2. Nottingham: British Geological Survey.
Zurück zum Zitat Glanville, T. D. (1985). Agricultural drainage wells in Iowa. Ames: Iowa State University. Glanville, T. D. (1985). Agricultural drainage wells in Iowa. Ames: Iowa State University.
Zurück zum Zitat Goyal, V., Jhorar, B. S., Malik, R. S., & Streck, T. (2008). Performance evaluation of aquifer storage recovery for conjunctive water management as influenced by buffer storage volume and storage time. Current Science, 94, 465–472. Goyal, V., Jhorar, B. S., Malik, R. S., & Streck, T. (2008). Performance evaluation of aquifer storage recovery for conjunctive water management as influenced by buffer storage volume and storage time. Current Science, 94, 465–472.
Zurück zum Zitat Greskowiak, J., Prommer, H., Vanderzalm, J., Pavelic, P., & Dillon, P. (2005). Modeling of carbon cycles and biogeochemical changes during injection and recovery of reclaimed water at Bolivar, South Australia. Water Resources Research, 41, W10418.CrossRef Greskowiak, J., Prommer, H., Vanderzalm, J., Pavelic, P., & Dillon, P. (2005). Modeling of carbon cycles and biogeochemical changes during injection and recovery of reclaimed water at Bolivar, South Australia. Water Resources Research, 41, W10418.CrossRef
Zurück zum Zitat Greskowiak, J., Prommer, H., Vanderzalm, J., Pavelic, P., & Dillon, P. (2006). Quantifying biogeochemical changes during ASR of reclaimed water at Bolivar, South Australia. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 360–365). Paris: UNESCO. Greskowiak, J., Prommer, H., Vanderzalm, J., Pavelic, P., & Dillon, P. (2006). Quantifying biogeochemical changes during ASR of reclaimed water at Bolivar, South Australia. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 360–365). Paris: UNESCO.
Zurück zum Zitat Guo, W., & Langevin, C. D. (2002). User’s guide to SEAWAT: A computer program for simulation of three-dimensional variable-density ground-water flow. U.S. Geological Survey Open-File Report 01-434. Guo, W., & Langevin, C. D. (2002). User’s guide to SEAWAT: A computer program for simulation of three-dimensional variable-density ground-water flow. U.S. Geological Survey Open-File Report 01-434.
Zurück zum Zitat Guo, W., Coulibaly, K., & Maliva, R. G. (2014). Simulated effect of aquifer heterogeneity on ASR system performance. Environmental Earth Sciences, 31(12), 7803–7809.CrossRef Guo, W., Coulibaly, K., & Maliva, R. G. (2014). Simulated effect of aquifer heterogeneity on ASR system performance. Environmental Earth Sciences, 31(12), 7803–7809.CrossRef
Zurück zum Zitat Händel, F., Liu, G., Dietrich, P., Liedl, R., & Butler, J. J. (2014). Numerical assessment of ASR recharge using small-diameter wells and surface basins. Journal of Hydrology, 517, 54–63.CrossRef Händel, F., Liu, G., Dietrich, P., Liedl, R., & Butler, J. J. (2014). Numerical assessment of ASR recharge using small-diameter wells and surface basins. Journal of Hydrology, 517, 54–63.CrossRef
Zurück zum Zitat Harrington, G. A., Love, A. J., & Sanford, W. E. (2002). Aquifer storage and recovery in a fractured rock aquifer of the Claire Valley, South Australia. In P. J. Dillon (Ed.), Management of aquifer recharge for sustainability (pp. 315–318). Lisse: A.A. Balkema. Harrington, G. A., Love, A. J., & Sanford, W. E. (2002). Aquifer storage and recovery in a fractured rock aquifer of the Claire Valley, South Australia. In P. J. Dillon (Ed.), Management of aquifer recharge for sustainability (pp. 315–318). Lisse: A.A. Balkema.
Zurück zum Zitat Hashim, M. A. (2006). Water, agriculture and environment in arid lands. Water and agriculture visions for Qatar by 2020. Doha: Friends of Environment Centre. Hashim, M. A. (2006). Water, agriculture and environment in arid lands. Water and agriculture visions for Qatar by 2020. Doha: Friends of Environment Centre.
Zurück zum Zitat INTERA Environmental Consultants. (1979). Revision of the documentation for a model for calculating the effects of liquid waste disposal in deep saline aquifers. U.S. Geological Survey Water-Resources Investigations 79–96. INTERA Environmental Consultants. (1979). Revision of the documentation for a model for calculating the effects of liquid waste disposal in deep saline aquifers. U.S. Geological Survey Water-Resources Investigations 79–96.
Zurück zum Zitat INTERCOMP Resource Development and Engineering. (1976). A model for calculating effects of liquid waste disposal in deep saline aquifers, Part 1—Development, Part 2—Documentation. U.S. Geological Survey Water Resources Investigations 76–61. INTERCOMP Resource Development and Engineering. (1976). A model for calculating effects of liquid waste disposal in deep saline aquifers, Part 1—Development, Part 2—Documentation. U.S. Geological Survey Water Resources Investigations 76–61.
Zurück zum Zitat Kimbler, O. K., Kazmann, R., & Whitehead, W. R. (1973). Saline aquifers—future storage reservoirs for fresh water. In J. Braunstein (Ed.), Underground water management and artificial recharge, Publication 110 (pp. 192–206). London: International Association of Hydrological Sciences. Kimbler, O. K., Kazmann, R., & Whitehead, W. R. (1973). Saline aquifers—future storage reservoirs for fresh water. In J. Braunstein (Ed.), Underground water management and artificial recharge, Publication 110 (pp. 192–206). London: International Association of Hydrological Sciences.
Zurück zum Zitat Kimbler, O. K., Kazmann, R., & Whitehead, W. R. (1975). Cycle storage of fresh water in saline aquifers. Bulletin 10. Baton Rouge: Louisiana Water Research Institute. Kimbler, O. K., Kazmann, R., & Whitehead, W. R. (1975). Cycle storage of fresh water in saline aquifers. Bulletin 10. Baton Rouge: Louisiana Water Research Institute.
Zurück zum Zitat Kimery, J. O., & Fayard, L. D. (1984). Geohydrologic reconnaissance of drainage wells in Florida. U.S. Geological Survey Water-Resources Investigations Report 84-4021. Kimery, J. O., & Fayard, L. D. (1984). Geohydrologic reconnaissance of drainage wells in Florida. U.S. Geological Survey Water-Resources Investigations Report 84-4021.
Zurück zum Zitat Kloppmann, W., Aharons, A., Chikurel, H., Dillon, P., Gaus, I., Guttman, J., Kraitzer, T., Kremer, S., Masciopinto, C., Miotinski, K., Pavelic, P., Pettenati, M., & Picot-Colbeaux, G. (2012). In C. Kazner, T. Wintgens & P. Dillon (Eds.), Water reclamation technologies for safe managed aquifer recharge (pp. 311–250). London: IWA Publishing. Kloppmann, W., Aharons, A., Chikurel, H., Dillon, P., Gaus, I., Guttman, J., Kraitzer, T., Kremer, S., Masciopinto, C., Miotinski, K., Pavelic, P., Pettenati, M., & Picot-Colbeaux, G. (2012). In C. Kazner, T. Wintgens & P. Dillon (Eds.), Water reclamation technologies for safe managed aquifer recharge (pp. 311–250). London: IWA Publishing.
Zurück zum Zitat Libra, R. D., & Hallberg, G. R. (1993). Agricultural drainage wells in Iowa: Hydrogeological settings and water-quality implications (Technical Information Series 24). Iowa Department of Natural Resources. Libra, R. D., & Hallberg, G. R. (1993). Agricultural drainage wells in Iowa: Hydrogeological settings and water-quality implications (Technical Information Series 24). Iowa Department of Natural Resources.
Zurück zum Zitat Liu, G., Knobbe, S., Reboulet, E. C., Whittemore, D. O., Händel, F., & Butler, J. J. (2016). Field investigation of a new recharge approach for ASR projects in near-surface aquifers. Groundwater, 54(3), 425–433.CrossRef Liu, G., Knobbe, S., Reboulet, E. C., Whittemore, D. O., Händel, F., & Butler, J. J. (2016). Field investigation of a new recharge approach for ASR projects in near-surface aquifers. Groundwater, 54(3), 425–433.CrossRef
Zurück zum Zitat Lowry, C. S., & Anderson, M. P. (2006). An assessment of aquifer storage recovery using ground water flow models. Ground Water, 44(5), 661–667. Lowry, C. S., & Anderson, M. P. (2006). An assessment of aquifer storage recovery using ground water flow models. Ground Water, 44(5), 661–667.
Zurück zum Zitat Lu, C., Du, P., Chen, Y., & Luo, J. (2011). Recovery efficiency of aquifer storage and recovery (ASR) with mass transfer limitation. Water Resources Research, 47, W08529. Lu, C., Du, P., Chen, Y., & Luo, J. (2011). Recovery efficiency of aquifer storage and recovery (ASR) with mass transfer limitation. Water Resources Research, 47, W08529.
Zurück zum Zitat Ludwig, R. D., Drake, R. L., & Strenitzke, D. A. (1990). Agricultural drainage wells: Impact on ground water. Ada, OK: U.S. Environmental Protection Agency Robert S. Kerr Environmental Research Laboratory. Ludwig, R. D., Drake, R. L., & Strenitzke, D. A. (1990). Agricultural drainage wells: Impact on ground water. Ada, OK: U.S. Environmental Protection Agency Robert S. Kerr Environmental Research Laboratory.
Zurück zum Zitat Malik, R. S., Jhorar, B. S., Jhorar, R. K., Streck, T., & Richter, J. (2002). Long-term successful operation of existing brackish cavity wells for ASR to improve quality for irrigation by Indian farmers. In P. J. Dillon (Ed.), Management of aquifer recharge for sustainability (pp. 465–468). Lisse: A.A. Balkema. Malik, R. S., Jhorar, B. S., Jhorar, R. K., Streck, T., & Richter, J. (2002). Long-term successful operation of existing brackish cavity wells for ASR to improve quality for irrigation by Indian farmers. In P. J. Dillon (Ed.), Management of aquifer recharge for sustainability (pp. 465–468). Lisse: A.A. Balkema.
Zurück zum Zitat Malik, R. S., Yadav, D. K., Jhorar, B. S., Jhorar, R. K., & Streck, T. (2006). Physical and chemical interactions in an ASR cavity well in a brackish aquifer. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 121–126). Paris: UNESCO. Malik, R. S., Yadav, D. K., Jhorar, B. S., Jhorar, R. K., & Streck, T. (2006). Physical and chemical interactions in an ASR cavity well in a brackish aquifer. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 121–126). Paris: UNESCO.
Zurück zum Zitat Maliva, R. G. (2014). Groundwater banking: Opportunities and management challenges. Water Policy, 16(1), 144–156.CrossRef Maliva, R. G. (2014). Groundwater banking: Opportunities and management challenges. Water Policy, 16(1), 144–156.CrossRef
Zurück zum Zitat Maliva, R. G., & Missimer, T. M. (2008). ASR, useful storage, and the myth of residual pressure. Ground Water, 46, 171.CrossRef Maliva, R. G., & Missimer, T. M. (2008). ASR, useful storage, and the myth of residual pressure. Ground Water, 46, 171.CrossRef
Zurück zum Zitat Maliva, R. G., & Missimer, T. M. (2010). Aquifer storage and recovery and managed aquifer recharge using wells: Planning, hydrogeology, design, and operation. Houston: Schlumberger Corporation. Maliva, R. G., & Missimer, T. M. (2010). Aquifer storage and recovery and managed aquifer recharge using wells: Planning, hydrogeology, design, and operation. Houston: Schlumberger Corporation.
Zurück zum Zitat Maliva, R. G., & Missimer, T. M. (2012). Arid lands water evaluation and management. Berlin: Springer.CrossRef Maliva, R. G., & Missimer, T. M. (2012). Arid lands water evaluation and management. Berlin: Springer.CrossRef
Zurück zum Zitat Maliva, R. G., Guo, W., & Missimer, T. M. (2005). Hydrogeology and aquifer storage and recovery system performance. Gulf Coast Associations of Geological Societies Transactions, 55, 473–485. Maliva, R. G., Guo, W., & Missimer, T. M. (2005). Hydrogeology and aquifer storage and recovery system performance. Gulf Coast Associations of Geological Societies Transactions, 55, 473–485.
Zurück zum Zitat Maliva, R. G., Guo, W., & Missimer, T. M. (2006). Aquifer storage and recovery: Recent hydrogeological advances and system performance. Water Environment Research, 78, 2428–2435.CrossRef Maliva, R. G., Guo, W., & Missimer, T. M. (2006). Aquifer storage and recovery: Recent hydrogeological advances and system performance. Water Environment Research, 78, 2428–2435.CrossRef
Zurück zum Zitat McDonald, M. G., & Harbaugh, A. W. (1988). A modular three-dimensional finite-difference ground water flow model. U.S. Geological Survey Techniques of Water-Resources Investigation Report 06-A1. McDonald, M. G., & Harbaugh, A. W. (1988). A modular three-dimensional finite-difference ground water flow model. U.S. Geological Survey Techniques of Water-Resources Investigation Report 06-A1.
Zurück zum Zitat Merritt, M. L. (1985). Subsurface storage of freshwater in south Florida: A digital model analysis of recoverability. U.S. Geological Survey Water-Supply Paper 2261. Merritt, M. L. (1985). Subsurface storage of freshwater in south Florida: A digital model analysis of recoverability. U.S. Geological Survey Water-Supply Paper 2261.
Zurück zum Zitat Merritt, M. L. (1986). Recovering fresh water stored in saline limestone aquifers. Ground Water, 24(4), 516–529.CrossRef Merritt, M. L. (1986). Recovering fresh water stored in saline limestone aquifers. Ground Water, 24(4), 516–529.CrossRef
Zurück zum Zitat Mirecki, J. E. (2006). Geochemical models of water-quality changes during aquifer storage recovery (ASR) cycle tests, Phase 1: Geochemical models using existing data, Final Report ERDC/EL TR-06-8: Jacksonville: U.S. Army Corps of Engineers. Mirecki, J. E. (2006). Geochemical models of water-quality changes during aquifer storage recovery (ASR) cycle tests, Phase 1: Geochemical models using existing data, Final Report ERDC/EL TR-06-8: Jacksonville: U.S. Army Corps of Engineers.
Zurück zum Zitat Mirecki, J. E., Campbell, B. G., Conlon, K. J., & Petkewich, M. D. (1998). Solute changes during aquifer storage recovery testing in a limestone/clastic aquifer. Ground Water, 36, 394–403.CrossRef Mirecki, J. E., Campbell, B. G., Conlon, K. J., & Petkewich, M. D. (1998). Solute changes during aquifer storage recovery testing in a limestone/clastic aquifer. Ground Water, 36, 394–403.CrossRef
Zurück zum Zitat Missimer, T. M., Guo, W., Walker, C. W., & Maliva, R. G. (2002). Hydraulic and density considerations in the design of aquifer storage and recovery systems. Florida Water Resources Journal, Feb 2002, 30–36. Missimer, T. M., Guo, W., Walker, C. W., & Maliva, R. G. (2002). Hydraulic and density considerations in the design of aquifer storage and recovery systems. Florida Water Resources Journal, Feb 2002, 30–36.
Zurück zum Zitat Natural Research Council. (2008). Prospects for managed underground storage of recoverable water. Washington, DC: National Academies Press. Natural Research Council. (2008). Prospects for managed underground storage of recoverable water. Washington, DC: National Academies Press.
Zurück zum Zitat Nutter, N., & Gin, G. (2016). Aquifer storage and recovery well systems factory pumping injection testing: Is this necessary? International Symposium on Managed Aquifer Recharge (ISMAR9), Mexico City, June 20–24, 2016. Nutter, N., & Gin, G. (2016). Aquifer storage and recovery well systems factory pumping injection testing: Is this necessary? International Symposium on Managed Aquifer Recharge (ISMAR9), Mexico City, June 20–24, 2016.
Zurück zum Zitat O’Shea, M. (1994). Borehole recharge—A drought management strategy in N. London, UK. In A. I. Johnson & R. D. G. (Eds.), Artificial recharge of ground water, II: Proceedings of the Second International Symposium on Artificial Recharge of Ground Water (pp. 210–219). Reston, VA: American Society of Civil Engineers. O’Shea, M. (1994). Borehole recharge—A drought management strategy in N. London, UK. In A. I. Johnson & R. D. G. (Eds.), Artificial recharge of ground water, II: Proceedings of the Second International Symposium on Artificial Recharge of Ground Water (pp. 210–219). Reston, VA: American Society of Civil Engineers.
Zurück zum Zitat O’Shea, M. J., Baxter, K. M., & Charalambous, A. N. (1995). The hydrogeology of the Enfield-Haringey artificial recharge scheme. Quarterly Journal of Engineering Geology, 28, S115–S129.CrossRef O’Shea, M. J., Baxter, K. M., & Charalambous, A. N. (1995). The hydrogeology of the Enfield-Haringey artificial recharge scheme. Quarterly Journal of Engineering Geology, 28, S115–S129.CrossRef
Zurück zum Zitat Parkhurst, D. L., & Appelo, C. A. J. (1999). PHREEQC (Version 2)—A computer program for speciation, batch reaction, one-dimensional transport, and inverse geochemical calculations. U.S. Geological Survey Water-Resources Investigations Report 99-42549. Parkhurst, D. L., & Appelo, C. A. J. (1999). PHREEQC (Version 2)—A computer program for speciation, batch reaction, one-dimensional transport, and inverse geochemical calculations. U.S. Geological Survey Water-Resources Investigations Report 99-42549.
Zurück zum Zitat Parkhurst, D. L., & Kipp, K. L. (2002). Parallel processing for PHAST—A three-dimensional reactive-transport simulator. In S. M. Hassanizadeh, R. J. Schotting, W. G. Gray & G. G. Pinder (Eds.), Computational methods in water resources, Developments in Water Science 47 (pp. 711–718). Amsterdam: Elsevier. Parkhurst, D. L., & Kipp, K. L. (2002). Parallel processing for PHAST—A three-dimensional reactive-transport simulator. In S. M. Hassanizadeh, R. J. Schotting, W. G. Gray & G. G. Pinder (Eds.), Computational methods in water resources, Developments in Water Science 47 (pp. 711–718). Amsterdam: Elsevier.
Zurück zum Zitat Parsons, S., Dillon, P., Irvine, E., Holland, G., & Kaufman, C. (2012). Progress in managed aquifer recharge in Australia; Waterlines Report Series No. 73. Canberra: National Water Commission. Parsons, S., Dillon, P., Irvine, E., Holland, G., & Kaufman, C. (2012). Progress in managed aquifer recharge in Australia; Waterlines Report Series No. 73. Canberra: National Water Commission.
Zurück zum Zitat Pavelic, P., Dillon, P. J., & Simmons, C. T. (2002). Lumped parameter estimation of initial recovery efficiency during aquifer storage and recovery. In P. J. Dillon (Ed.), Management of aquifer recharge for Sustainability (pp. 285–290). Lisse: A.A. Balkema. Pavelic, P., Dillon, P. J., & Simmons, C. T. (2002). Lumped parameter estimation of initial recovery efficiency during aquifer storage and recovery. In P. J. Dillon (Ed.), Management of aquifer recharge for Sustainability (pp. 285–290). Lisse: A.A. Balkema.
Zurück zum Zitat Pavelic, P., Dillon, P. J., & Simmons, C. T. (2006). Multiscale characterization of a heterogeneous aquifer using an ASR operation. Ground Water, 44, 55–164.CrossRef Pavelic, P., Dillon, P. J., & Simmons, C. T. (2006). Multiscale characterization of a heterogeneous aquifer using an ASR operation. Ground Water, 44, 55–164.CrossRef
Zurück zum Zitat Petkewich, M. D., Parkhurst, D. L., Conlon, K. J., & Mirecki, J. E. (2004). Hydrologic and geochemical evaluation of aquifer storage recovery in the Santee Limestone/Black Mingo aquifer, Charleston, South Carolina, 1998–2002. U.S. Geological Survey Scientific Investigations Report 2004-5046. Petkewich, M. D., Parkhurst, D. L., Conlon, K. J., & Mirecki, J. E. (2004). Hydrologic and geochemical evaluation of aquifer storage recovery in the Santee Limestone/Black Mingo aquifer, Charleston, South Carolina, 1998–2002. U.S. Geological Survey Scientific Investigations Report 2004-5046.
Zurück zum Zitat Plummer, L. N., Prestemon, E. C., & Parkhurst, D. L. (1991). An interactive code (NETPATH) for modeling NET geochemical reactions along a flow PATH. U.S. Geological Survey Water-Resources Investigations Report 91-4078. Plummer, L. N., Prestemon, E. C., & Parkhurst, D. L. (1991). An interactive code (NETPATH) for modeling NET geochemical reactions along a flow PATH. U.S. Geological Survey Water-Resources Investigations Report 91-4078.
Zurück zum Zitat Plummer, L. N., Prestemon, E. C., & Parkhurst, D. L. (1994). An interactive code (NETPATH) for modeling NET geochemical reactions along a flow PATH–version 2.0. U.S. Geological Survey Water-Resources Investigations Report 94-4169. Plummer, L. N., Prestemon, E. C., & Parkhurst, D. L. (1994). An interactive code (NETPATH) for modeling NET geochemical reactions along a flow PATH–version 2.0. U.S. Geological Survey Water-Resources Investigations Report 94-4169.
Zurück zum Zitat Pollock, D. W. (1994). User’s guide for MODPATH/MODPATH-PLOT version 2: A particle tracking post-processing package for MODFLOW, the U.S. Geological Survey finite-difference ground-water flow model. U.S. Geological Survey Open-File Report 94-464. Pollock, D. W. (1994). User’s guide for MODPATH/MODPATH-PLOT version 2: A particle tracking post-processing package for MODFLOW, the U.S. Geological Survey finite-difference ground-water flow model. U.S. Geological Survey Open-File Report 94-464.
Zurück zum Zitat Prommer, H., & Stuyfzand, P. J. (2005a). Identification of temperature-dependent water quality changes during deep well injection in a pyretic aquifer. Environmental Science and Technology, 39, 2200–2209.CrossRef Prommer, H., & Stuyfzand, P. J. (2005a). Identification of temperature-dependent water quality changes during deep well injection in a pyretic aquifer. Environmental Science and Technology, 39, 2200–2209.CrossRef
Zurück zum Zitat Prommer, H., & Stuyfzand, P. J. (2005b). PHT3D modeling of water quality changes during deep well injection at Someren. In P. Dillon & S. Toze (Eds.), Water quality improvements during aquifer storage and recovery. Volume 1: Water quality improvement processes, Report 91056F, pp. 229–244. Denver: AWWA Research Foundation. Prommer, H., & Stuyfzand, P. J. (2005b). PHT3D modeling of water quality changes during deep well injection at Someren. In P. Dillon & S. Toze (Eds.), Water quality improvements during aquifer storage and recovery. Volume 1: Water quality improvement processes, Report 91056F, pp. 229–244. Denver: AWWA Research Foundation.
Zurück zum Zitat Prommer, H., & Stuyfzand, P. (2006). On the use of reactive multicomponent transport modeling for assessing water quality changes during managed aquifer recharge. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 415-420). Paris: UNESCO. Prommer, H., & Stuyfzand, P. (2006). On the use of reactive multicomponent transport modeling for assessing water quality changes during managed aquifer recharge. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 415-420). Paris: UNESCO.
Zurück zum Zitat Prommer, H., Barry, D. A., & Zheng, C. (2003). MODFLOW/MT3DMS based reactive multi-component transport modeling. Ground Water, 41, 247–257.CrossRef Prommer, H., Barry, D. A., & Zheng, C. (2003). MODFLOW/MT3DMS based reactive multi-component transport modeling. Ground Water, 41, 247–257.CrossRef
Zurück zum Zitat Pyne, R. D. G. (1995). Groundwater recharge and wells. Boca Raton: Lewis. Pyne, R. D. G. (1995). Groundwater recharge and wells. Boca Raton: Lewis.
Zurück zum Zitat Pyne, R. D. G. (2005). Aquifer storage recovery, a guide to groundwater recharge through wells. Gainesville, FL: ASR Systems. Pyne, R. D. G. (2005). Aquifer storage recovery, a guide to groundwater recharge through wells. Gainesville, FL: ASR Systems.
Zurück zum Zitat Pyne, R. D. G. (2006). Recent advances in ASR technology in the United States, In Recharge systems for protecting and enhancing groundwater resources. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 139–144). Paris: UNESCO. Pyne, R. D. G. (2006). Recent advances in ASR technology in the United States, In Recharge systems for protecting and enhancing groundwater resources. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 139–144). Paris: UNESCO.
Zurück zum Zitat Pyne, R. D. G. (2015). Aquifer storage recovery: An ASR solution to saltwater intrusion at Hilton Head Island, South Carolina, USA. Environmental Earth Sciences, 73(12), 7851–7859.CrossRef Pyne, R. D. G. (2015). Aquifer storage recovery: An ASR solution to saltwater intrusion at Hilton Head Island, South Carolina, USA. Environmental Earth Sciences, 73(12), 7851–7859.CrossRef
Zurück zum Zitat Pyne, R. D. G., & Howard, J. B. (2004). Desalination/aquifer storage recovery (DASR): A cost effective combination for Corpus Christi, Texas. Desalination, 165, 353–367.CrossRef Pyne, R. D. G., & Howard, J. B. (2004). Desalination/aquifer storage recovery (DASR): A cost effective combination for Corpus Christi, Texas. Desalination, 165, 353–367.CrossRef
Zurück zum Zitat Quiñones-Aponte, V., & Wexler, E. J. (1995). Preliminary assessment of injection, storage, and recovery of freshwater in the Lower Hawthorn Aquifer, Cape Coral, Florida. U.S. Geological Survey Investigations Report 94-4121. Quiñones-Aponte, V., & Wexler, E. J. (1995). Preliminary assessment of injection, storage, and recovery of freshwater in the Lower Hawthorn Aquifer, Cape Coral, Florida. U.S. Geological Survey Investigations Report 94-4121.
Zurück zum Zitat Reese, R. S. (2002). Inventory and review of aquifer storage and recovery in southern Florida. U.S.G.S. Water-Resources Investigations Report 02-4036. Reese, R. S. (2002). Inventory and review of aquifer storage and recovery in southern Florida. U.S.G.S. Water-Resources Investigations Report 02-4036.
Zurück zum Zitat Reese, R. S., & Alvarez-Zarikian, C. A. (2007). Hydrogeology and aquifer storage and recovery performance in the Upper Floridan Aquifer, Southern Florida. U.S. Geological Survey Scientific Investigations Report 2006-5239. Reese, R. S., & Alvarez-Zarikian, C. A. (2007). Hydrogeology and aquifer storage and recovery performance in the Upper Floridan Aquifer, Southern Florida. U.S. Geological Survey Scientific Investigations Report 2006-5239.
Zurück zum Zitat Rinck-Pfeiffer, S., Pitman, C., & Dillon, P. (2006). Stormwater ASR in practice and ASTR under investigation in Salisbury, South Australia, In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 151–159). Paris: UNESCO. Rinck-Pfeiffer, S., Pitman, C., & Dillon, P. (2006). Stormwater ASR in practice and ASTR under investigation in Salisbury, South Australia, In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 151–159). Paris: UNESCO.
Zurück zum Zitat Schaetzle, W. J., Brett, C. E., Grubbs, D. M., & Seppanen, M. S. (1980). Thermal energy storage in aquifers. New York: Pergamon Press. Schaetzle, W. J., Brett, C. E., Grubbs, D. M., & Seppanen, M. S. (1980). Thermal energy storage in aquifers. New York: Pergamon Press.
Zurück zum Zitat Schiner, G. R., & German, E. R. (1983). Effects of recharge from drainage wells on quality of water in the Floridan Aquifer in the Orlando area, central Florida. U.S. Geological Survey Water Resources Investigation Report 82-4094. Schiner, G. R., & German, E. R. (1983). Effects of recharge from drainage wells on quality of water in the Floridan Aquifer in the Orlando area, central Florida. U.S. Geological Survey Water Resources Investigation Report 82-4094.
Zurück zum Zitat Schwaller, K. (2015, February 22). Ag drainage wells, a thing of the past. The Messenger (Fort Dodge, IA). Schwaller, K. (2015, February 22). Ag drainage wells, a thing of the past. The Messenger (Fort Dodge, IA).
Zurück zum Zitat Segalen, A.-S., Pavelic, P., & Dillon, P. (2005). Review of drilling, completion and remediation methods for ASR wells in unconsolidated aquifers, Technical Report No. 04/05. Canberra: CSIRO Land and Water. Segalen, A.-S., Pavelic, P., & Dillon, P. (2005). Review of drilling, completion and remediation methods for ASR wells in unconsolidated aquifers, Technical Report No. 04/05. Canberra: CSIRO Land and Water.
Zurück zum Zitat Segalen, A.-S., Pavelic, P., Dillon, P., & McCann, D. (2006). Review of the effects of drilling and completion methods of ASR wells in unconsolidated aquifers. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 160–163). Paris: UNESCO. Segalen, A.-S., Pavelic, P., Dillon, P., & McCann, D. (2006). Review of the effects of drilling and completion methods of ASR wells in unconsolidated aquifers. In Recharge systems for protecting and enhancing groundwater resources, Proceedings of the 5th International Symposium on Management of Aquifer Recharge, Berlin, Germany, June 11–16, 2005 (pp. 160–163). Paris: UNESCO.
Zurück zum Zitat Shah, T. (2009). Climate change and groundwater: India’s opportunities for mitigation and adaptation. Environmental Research Letters, 4(3), 035005.CrossRef Shah, T. (2009). Climate change and groundwater: India’s opportunities for mitigation and adaptation. Environmental Research Letters, 4(3), 035005.CrossRef
Zurück zum Zitat Shah, T., Roy, A. D., Qureshi, A. S., & Wang, J. (2003). Sustaining Asia’s groundwater boom: An overview of issues and evidence. Natural Resources Forum, 27(2), 130–141.CrossRef Shah, T., Roy, A. D., Qureshi, A. S., & Wang, J. (2003). Sustaining Asia’s groundwater boom: An overview of issues and evidence. Natural Resources Forum, 27(2), 130–141.CrossRef
Zurück zum Zitat Sheffield, C.W., Rivero-deAguillar, C., & McCann, K. (1995, March). Drainage wells—A dual purpose. Florida Water Resources Journal, 51–55. Sheffield, C.W., Rivero-deAguillar, C., & McCann, K. (1995, March). Drainage wells—A dual purpose. Florida Water Resources Journal, 51–55.
Zurück zum Zitat Sheng, Z., Arthur, J. A., Restrepo, J., & Allen-King, R. (2007). On recovery efficiency of managed underground storage of recoverable water systems. In P. Fox (Ed.), Management of aquifer recharge for sustainability. Proceedings of the 6th International Symposium on Managed Aquifer Recharge of Groundwater (pp. 84–95). Phoenix: Acacia Publishing. Sheng, Z., Arthur, J. A., Restrepo, J., & Allen-King, R. (2007). On recovery efficiency of managed underground storage of recoverable water systems. In P. Fox (Ed.), Management of aquifer recharge for sustainability. Proceedings of the 6th International Symposium on Managed Aquifer Recharge of Groundwater (pp. 84–95). Phoenix: Acacia Publishing.
Zurück zum Zitat Stoner, R. F., & Bakiewicz, W. (1993). Scavenger wells-1—Historic developments. In E. Custodio & A. Galofré (Eds.), Study and modelling of saltwater intrusion into aquifers, Proceedings of the 12th Saltwater Intrusion Meeting, Barcelona, Spain, 1–6 November 1992. Barcelona, Spain, pp. 545–556. Stoner, R. F., & Bakiewicz, W. (1993). Scavenger wells-1—Historic developments. In E. Custodio & A. Galofré (Eds.), Study and modelling of saltwater intrusion into aquifers, Proceedings of the 12th Saltwater Intrusion Meeting, Barcelona, Spain, 1–6 November 1992. Barcelona, Spain, pp. 545–556.
Zurück zum Zitat Sultana, S., Ahmed, K. M., Mahtab-Ul-Alam, S. M., Hasan, M., Tuinhof, A., Ghosh, S. K., et al. (2015). Low-cost aquifer storage and recovery: Implications for improving drinking water access for rural communities in coastal Bangladesh. Journal of Hydrologic Engineering, 20, B5014007.CrossRef Sultana, S., Ahmed, K. M., Mahtab-Ul-Alam, S. M., Hasan, M., Tuinhof, A., Ghosh, S. K., et al. (2015). Low-cost aquifer storage and recovery: Implications for improving drinking water access for rural communities in coastal Bangladesh. Journal of Hydrologic Engineering, 20, B5014007.CrossRef
Zurück zum Zitat Taneja, D. S., & Khepar, S. D. (1996). Effect of artificial ground-water recharge on aquifer parameters using cavity well. Ground Water, 34, 335–340.CrossRef Taneja, D. S., & Khepar, S. D. (1996). Effect of artificial ground-water recharge on aquifer parameters using cavity well. Ground Water, 34, 335–340.CrossRef
Zurück zum Zitat Todd, D. K. (1959). Annotated bibliography on artificial recharge of ground water through 1954. U.S. Geological Survey Water-Supply Paper 1477. Todd, D. K. (1959). Annotated bibliography on artificial recharge of ground water through 1954. U.S. Geological Survey Water-Supply Paper 1477.
Zurück zum Zitat United Nations Environment Programme. (2001). Sourcebook of alternative technologies for freshwater augmentation in West Asia, IETC Technical Publications Series Issue 8F. United Nations Environment Programme, Division of Technology, Industry and Economics. United Nations Environment Programme. (2001). Sourcebook of alternative technologies for freshwater augmentation in West Asia, IETC Technical Publications Series Issue 8F. United Nations Environment Programme, Division of Technology, Industry and Economics.
Zurück zum Zitat USEPA. (1999). The Class V underground injection control study. Volume 2. Agricultural drainage wells. Washington DC: USEPA, Office of Ground Water and Drinking Water. USEPA. (1999). The Class V underground injection control study. Volume 2. Agricultural drainage wells. Washington DC: USEPA, Office of Ground Water and Drinking Water.
Zurück zum Zitat Voss, C. I., & Provost, A. M. (2002). SUTRA, A model for saturated-unsaturated variable-density ground-water flow with solute or energy transport. U.S. Geological Survey Water-Resources Investigations Report 02-4231. Voss, C. I., & Provost, A. M. (2002). SUTRA, A model for saturated-unsaturated variable-density ground-water flow with solute or energy transport. U.S. Geological Survey Water-Resources Investigations Report 02-4231.
Zurück zum Zitat Wallis, I., Prommer, H., Simmons, C. T., Post, V., & Stuyfzand, P. J. (2010). Evaluation of conceptual and numerical models for arsenic mobilization and attenuation during managed aquifer recharge. Environmental Science and Technology, 44, 5035–5041.CrossRef Wallis, I., Prommer, H., Simmons, C. T., Post, V., & Stuyfzand, P. J. (2010). Evaluation of conceptual and numerical models for arsenic mobilization and attenuation during managed aquifer recharge. Environmental Science and Technology, 44, 5035–5041.CrossRef
Zurück zum Zitat Wallis, I., Prommer, H., Pichler, T., Norton, S. B., Annable, M. D., & Simmons, C. T. (2011). Process-based reactive transport model to quantify arsenic mobility during aquifer storage and recovery of potable water. Environmental Science and Technology, 45, 6924–6931.CrossRef Wallis, I., Prommer, H., Pichler, T., Norton, S. B., Annable, M. D., & Simmons, C. T. (2011). Process-based reactive transport model to quantify arsenic mobility during aquifer storage and recovery of potable water. Environmental Science and Technology, 45, 6924–6931.CrossRef
Zurück zum Zitat Ward, J. D., Simmons, C. T., & Dillon, P. J. (2007). A theoretical analysis of mixed convection in aquifer storage and recovery: How important are density effects? Journal of Hydrology, 343(3), 169–186.CrossRef Ward, J. D., Simmons, C. T., & Dillon, P. J. (2007). A theoretical analysis of mixed convection in aquifer storage and recovery: How important are density effects? Journal of Hydrology, 343(3), 169–186.CrossRef
Zurück zum Zitat Ward, J. D., Simmons, C. T., & Dillon, P. J. (2008). Variable-density modelling of multiple-cycle aquifer storage and recovery (ASR): Importance of anisotropy and layered heterogeneity in brackish aquifers. Journal of Hydrology, 356(1), 93–105.CrossRef Ward, J. D., Simmons, C. T., & Dillon, P. J. (2008). Variable-density modelling of multiple-cycle aquifer storage and recovery (ASR): Importance of anisotropy and layered heterogeneity in brackish aquifers. Journal of Hydrology, 356(1), 93–105.CrossRef
Zurück zum Zitat Ward, J. D., Simmons, C. T., Dillon, P. J., & Pavelic, P. (2009). Integrated assessment of lateral flow, density effects and dispersion in aquifer storage and recovery. Journal of Hydrology, 370(1), 83–99.CrossRef Ward, J. D., Simmons, C. T., Dillon, P. J., & Pavelic, P. (2009). Integrated assessment of lateral flow, density effects and dispersion in aquifer storage and recovery. Journal of Hydrology, 370(1), 83–99.CrossRef
Zurück zum Zitat WaterAid in Nepal. (2011). Rainwater harvesting for recharging shallow groundwater. Kathmandu, Nepal: WaterAid in Nepal. WaterAid in Nepal. (2011). Rainwater harvesting for recharging shallow groundwater. Kathmandu, Nepal: WaterAid in Nepal.
Zurück zum Zitat Zack, A. L. (1988). A well system to recover usable water from a freshwater-saltwater aquifer in Puerto Rico. U.S. Geological Survey Water-Supply Paper 2328. Zack, A. L. (1988). A well system to recover usable water from a freshwater-saltwater aquifer in Puerto Rico. U.S. Geological Survey Water-Supply Paper 2328.
Zurück zum Zitat Zheng, C., & Wang, P. P. (1999). MT3DMS: A modular three-dimensional multi-species model for simulation of advection, dispersion and chemical reactions of contaminants in ground water systems: Documentation and user’s guide, Report SERDP-99-1. Vicksburg, MS: U.S. Army Engineer Research and Development Center. Zheng, C., & Wang, P. P. (1999). MT3DMS: A modular three-dimensional multi-species model for simulation of advection, dispersion and chemical reactions of contaminants in ground water systems: Documentation and user’s guide, Report SERDP-99-1. Vicksburg, MS: U.S. Army Engineer Research and Development Center.
Zurück zum Zitat Zuurbier, K. G. (2015). Increasing freshwater recovery upon aquifer storage. A field and modelling study of dedicated aquifer storage and recovery configurations in brackish-saline aquifers. Ph.D. Dissertation, Technische Universiteit Delft. Zuurbier, K. G. (2015). Increasing freshwater recovery upon aquifer storage. A field and modelling study of dedicated aquifer storage and recovery configurations in brackish-saline aquifers. Ph.D. Dissertation, Technische Universiteit Delft.
Zurück zum Zitat Zuurbier, K. G., & Stuyfzand, P. J. (2017). Consequences and mitigation of salt water intrusion induced by short-circuiting during aquifer storage and recovery in a coastal subsurface. Hydrology and Earth System Sciences, 21, 1173–1181.CrossRef Zuurbier, K. G., & Stuyfzand, P. J. (2017). Consequences and mitigation of salt water intrusion induced by short-circuiting during aquifer storage and recovery in a coastal subsurface. Hydrology and Earth System Sciences, 21, 1173–1181.CrossRef
Zurück zum Zitat Zuurbier, K. G., Bakker, M., Zaadnoordijk, W. J., & Stuyfzand, P. J. (2013). Identification of potential sites for aquifer storage and recovery (ASR) in coastal areas using ASR performance estimation methods. Hydrogeology Journal, 21(6), 1371–1383.CrossRef Zuurbier, K. G., Bakker, M., Zaadnoordijk, W. J., & Stuyfzand, P. J. (2013). Identification of potential sites for aquifer storage and recovery (ASR) in coastal areas using ASR performance estimation methods. Hydrogeology Journal, 21(6), 1371–1383.CrossRef
Zurück zum Zitat Zuurbier, K. G., Zaadnoordijk, W. J., & Stuyfzand, P. J. (2014a). How multiple partially penetrating wells improve the freshwater recovery of coastal aquifer storage and recovery (ASR) systems: A field and modeling study. Journal of Hydrology, 509, 430–441.CrossRef Zuurbier, K. G., Zaadnoordijk, W. J., & Stuyfzand, P. J. (2014a). How multiple partially penetrating wells improve the freshwater recovery of coastal aquifer storage and recovery (ASR) systems: A field and modeling study. Journal of Hydrology, 509, 430–441.CrossRef
Zurück zum Zitat Zuurbier, K., Zaadnoordijk, W. J., & Stuyfzand, P. (2014b). The Freshmaker, An innovative tool for freshwater storage and abstraction in a salinized area using sophisticated horizontal drilled wells (HDDWs). Nieuwegein, Netherlands: KWR Water Research Institute. Zuurbier, K., Zaadnoordijk, W. J., & Stuyfzand, P. (2014b). The Freshmaker, An innovative tool for freshwater storage and abstraction in a salinized area using sophisticated horizontal drilled wells (HDDWs). Nieuwegein, Netherlands: KWR Water Research Institute.
Zurück zum Zitat Zuurbier, K. G., Kooiman, J. W., Groen, M. M. A., Maas, B., & Stuyfzand, P. (2015). Enabling successful aquifer storage and recovery of freshwater using horizontal direction drilled wells in a coastal aquifer. Journal of Hydrologic Engineering, 20(3), B4014003.CrossRef Zuurbier, K. G., Kooiman, J. W., Groen, M. M. A., Maas, B., & Stuyfzand, P. (2015). Enabling successful aquifer storage and recovery of freshwater using horizontal direction drilled wells in a coastal aquifer. Journal of Hydrologic Engineering, 20(3), B4014003.CrossRef
Zurück zum Zitat Zuurbier, K. G., Stuyfzand, P. J., & Hartog, N. (2016). Increasing freshwater recovery upon aquifer storage in brackish aquifers what can hydrological engineering bring? International Symposium on Managed Aquifer Recharge (ISMAR9), Mexico City, June 20–24, 2016. Zuurbier, K. G., Stuyfzand, P. J., & Hartog, N. (2016). Increasing freshwater recovery upon aquifer storage in brackish aquifers what can hydrological engineering bring? International Symposium on Managed Aquifer Recharge (ISMAR9), Mexico City, June 20–24, 2016.
Zurück zum Zitat Zuurbier, K. G., Raat, K. J., Paalman, M., Oosterhof, A. T., & Stuyfzand, P. J. (2017). How subsurface water technologies (SWT) can provide robust, effective, and cost-efficient solutions for freshwater Management in Coastal Zones. Water Resources Management, 31(2), 671–687.CrossRef Zuurbier, K. G., Raat, K. J., Paalman, M., Oosterhof, A. T., & Stuyfzand, P. J. (2017). How subsurface water technologies (SWT) can provide robust, effective, and cost-efficient solutions for freshwater Management in Coastal Zones. Water Resources Management, 31(2), 671–687.CrossRef
Metadaten
Titel
ASR and Aquifer Recharge Using Wells
verfasst von
Robert G. Maliva
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-11084-0_13