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2020 | OriginalPaper | Buchkapitel

2. Hydrogeology Basics—Aquifer Types and Hydraulics

verfasst von : Robert G. Maliva

Erschienen in: Anthropogenic Aquifer Recharge

Verlag: Springer International Publishing

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Abstract

The design, operation, and evaluation of managed aquifer recharge (MAR) and other anthropogenic aquifer recharge (AAR) systems should be based on a sound understanding of hydrogeological principles, local hydrogeological conditions, and how hydrogeology impacts system performance. A review of the historical performance of MAR systems revealed that system performance is dependent on local hydrogeological conditions and that there may not be an engineered solution to compensate for adverse local hydrogeological conditions.  Hydrogeology basics most applicable to AAR are reviewed.

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Literatur
Zurück zum Zitat Anderson, M. P. (1997). Characterization of geological heterogeneity. In G. Dagan & S. P. Neuman (Eds.), Subsurface flow and transport: A stochastic approach (pp. 23–43). Cambridge, UK: Cambridge University Press.CrossRef Anderson, M. P. (1997). Characterization of geological heterogeneity. In G. Dagan & S. P. Neuman (Eds.), Subsurface flow and transport: A stochastic approach (pp. 23–43). Cambridge, UK: Cambridge University Press.CrossRef
Zurück zum Zitat Anderson, M. P., Aiken, J. S., Webb, E. K., & Mickelson, D. M. (1999). Sedimentology and hydrogeology of two braided stream deposits. Sedimentary Geology, 129(3–4), 187–199.CrossRef Anderson, M. P., Aiken, J. S., Webb, E. K., & Mickelson, D. M. (1999). Sedimentology and hydrogeology of two braided stream deposits. Sedimentary Geology, 129(3–4), 187–199.CrossRef
Zurück zum Zitat Appelo, C. A. J., & Postma, D. (2005). Geochemistry, groundwater and pollution (2nd ed.). Leiden: AA Balkema. Appelo, C. A. J., & Postma, D. (2005). Geochemistry, groundwater and pollution (2nd ed.). Leiden: AA Balkema.
Zurück zum Zitat Barnett, B., Townley, L. R., Post, V., Evans, R. E., Hunt, R. J., Peeters, L., Richardson S, Werner, A. D., Knapton, A., & Boronkay, A. (2012). Australian groundwater modelling guidelines, Waterlines Reports Series No. 82. Canberra: National Water Commission. Barnett, B., Townley, L. R., Post, V., Evans, R. E., Hunt, R. J., Peeters, L., Richardson S, Werner, A. D., Knapton, A., & Boronkay, A. (2012). Australian groundwater modelling guidelines, Waterlines Reports Series No. 82. Canberra: National Water Commission.
Zurück zum Zitat Bianchi, M., Zheng, C., Wilson, C., Tick, G. R., Liu, G., & Gorelick, S. M. (2011). Spatial connectivity in a highly heterogeneous aquifer: From cores to preferential flow paths. Water Resources Research, 47(5), W05524.CrossRef Bianchi, M., Zheng, C., Wilson, C., Tick, G. R., Liu, G., & Gorelick, S. M. (2011). Spatial connectivity in a highly heterogeneous aquifer: From cores to preferential flow paths. Water Resources Research, 47(5), W05524.CrossRef
Zurück zum Zitat Bradbury, K. R., Gotkowitz, M. G., Hart, D. J., Eaton, T. T., Cherry, J. A., Parker, B. L., et al. (2006). Contaminant transport through aquitards: Technical guidance for aquitard assessment. Denver: American Water Works Research Foundation. Bradbury, K. R., Gotkowitz, M. G., Hart, D. J., Eaton, T. T., Cherry, J. A., Parker, B. L., et al. (2006). Contaminant transport through aquitards: Technical guidance for aquitard assessment. Denver: American Water Works Research Foundation.
Zurück zum Zitat Braga, A., Horst, M., & Traver, R. G. (2007). Temperature effects on the infiltration rate through an infiltration basin BMP. Journal of Irrigation and Drainage Engineering, 133(6), 593–601.CrossRef Braga, A., Horst, M., & Traver, R. G. (2007). Temperature effects on the infiltration rate through an infiltration basin BMP. Journal of Irrigation and Drainage Engineering, 133(6), 593–601.CrossRef
Zurück zum Zitat Constantz, J., Thomas, C. L., & Zellweger, G. (1994). Influence of diurnal variations in stream temperature on streamflow loss and groundwater recharge. Water Resources Research, 30(12), 3253–3264.CrossRef Constantz, J., Thomas, C. L., & Zellweger, G. (1994). Influence of diurnal variations in stream temperature on streamflow loss and groundwater recharge. Water Resources Research, 30(12), 3253–3264.CrossRef
Zurück zum Zitat Domenico, P. A., & Schwartz, F. W. (1998). Physical and chemical hydrogeology (2nd ed.). New York: Wiley. Domenico, P. A., & Schwartz, F. W. (1998). Physical and chemical hydrogeology (2nd ed.). New York: Wiley.
Zurück zum Zitat Fetter, C. W. (2001). Applied hydrogeology (4th ed.): Englewood Cliffs, NJ: Prentice Hall. Fetter, C. W. (2001). Applied hydrogeology (4th ed.): Englewood Cliffs, NJ: Prentice Hall.
Zurück zum Zitat Fogg, G. E. (1986). Groundwater flow and sand body interconnectedness in a thick multiple-aquifer system. Water Resources Research, 22, 679–694.CrossRef Fogg, G. E. (1986). Groundwater flow and sand body interconnectedness in a thick multiple-aquifer system. Water Resources Research, 22, 679–694.CrossRef
Zurück zum Zitat Freeze, R. A., & Cherry, J. A. (1979). Groundwater. Englewood Cliffs, NJ: Prentice-Hall. Freeze, R. A., & Cherry, J. A. (1979). Groundwater. Englewood Cliffs, NJ: Prentice-Hall.
Zurück zum Zitat Gelhar, L. W. (1986). Stochastic subsurface hydrology from theory to applications. Water Resources Research, 22(9S), 135S–145S.CrossRef Gelhar, L. W. (1986). Stochastic subsurface hydrology from theory to applications. Water Resources Research, 22(9S), 135S–145S.CrossRef
Zurück zum Zitat Gelhar, L. W., Welty, C., & Rehfeldt, K. R. (1992). A critical review of data for field-scale dispersion in aquifers. Water Resources Research, 38, 1955–1974.CrossRef Gelhar, L. W., Welty, C., & Rehfeldt, K. R. (1992). A critical review of data for field-scale dispersion in aquifers. Water Resources Research, 38, 1955–1974.CrossRef
Zurück zum Zitat Hantush, M. S. (1960). Modification of the theory of leaky aquifers. Journal of Geophysical Research, 65, 3713–3725.CrossRef Hantush, M. S. (1960). Modification of the theory of leaky aquifers. Journal of Geophysical Research, 65, 3713–3725.CrossRef
Zurück zum Zitat Hantush, M. S., & Jacob, C. E. (1955). Nonsteady radial flow in an infinite leaky aquifer. Transactions of the American Geophysical Union, 36, 95–100.CrossRef Hantush, M. S., & Jacob, C. E. (1955). Nonsteady radial flow in an infinite leaky aquifer. Transactions of the American Geophysical Union, 36, 95–100.CrossRef
Zurück zum Zitat Johnson, A. I. (1967). Specific yield—Compilation of specific yields for various materials. U.S. Geological Survey Water Supply Paper 1662-D. Johnson, A. I. (1967). Specific yield—Compilation of specific yields for various materials. U.S. Geological Survey Water Supply Paper 1662-D.
Zurück zum Zitat Kasenow, M. (1997). Applied groundwater hydrology and well hydraulics. Highlands Ranch, CO: Water Resources Publications. Kasenow, M. (1997). Applied groundwater hydrology and well hydraulics. Highlands Ranch, CO: Water Resources Publications.
Zurück zum Zitat Kasenow, M. (2006). Aquifer test data: Evaluation and analysis. Highlands Ranch, CO: Water Resources Publications. Kasenow, M. (2006). Aquifer test data: Evaluation and analysis. Highlands Ranch, CO: Water Resources Publications.
Zurück zum Zitat Konikow, L. F. (2011). The secret of successful solute-transport modeling. Ground Water, 49, 144–159.CrossRef Konikow, L. F. (2011). The secret of successful solute-transport modeling. Ground Water, 49, 144–159.CrossRef
Zurück zum Zitat Kruseman, G. P., & de Ridder, N. A. (1970). Analysis and evaluation of pumping test data. Wageningen, Netherlands: International Institute for Land Reclamation and Improvement. Kruseman, G. P., & de Ridder, N. A. (1970). Analysis and evaluation of pumping test data. Wageningen, Netherlands: International Institute for Land Reclamation and Improvement.
Zurück zum Zitat Lohman, S. W., et al. (1972). Definition of selected ground-water terms—Revisions and conceptual refinements. U.S. Geological Survey Water-Supply Paper 1988. Lohman, S. W., et al. (1972). Definition of selected ground-water terms—Revisions and conceptual refinements. U.S. Geological Survey Water-Supply Paper 1988.
Zurück zum Zitat Lohman, S. W. (1979). Ground-water hydraulics. U.S. Geological Survey Professional Paper 708. Lohman, S. W. (1979). Ground-water hydraulics. U.S. Geological Survey Professional Paper 708.
Zurück zum Zitat Maliva, R. G. (2016). Aquifer characterization techniques. Berlin: Springer.CrossRef Maliva, R. G. (2016). Aquifer characterization techniques. Berlin: Springer.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 Water Services. Maliva, R. G., & Missimer, T. M. (2010). Aquifer storage and recovery and managed aquifer recharge using wells: Planning, hydrogeology, design, and operation. Houston: Schlumberger Water Services.
Zurück zum Zitat Maliva, R. G., Kennedy, G. P., Martin, W. K., Missimer, T. M., Owosina, E. S., & Dickson, J. A. D. (2002). Dolomitization-induced aquifer heterogeneity: Evidence from the Upper Floridan Aquifer, Southwest Florida. Geological Society of America Bulletin, 114, 419–427.CrossRef Maliva, R. G., Kennedy, G. P., Martin, W. K., Missimer, T. M., Owosina, E. S., & Dickson, J. A. D. (2002). Dolomitization-induced aquifer heterogeneity: Evidence from the Upper Floridan Aquifer, Southwest Florida. Geological Society of America Bulletin, 114, 419–427.CrossRef
Zurück zum Zitat Molz, F. J., Güven, O., & Melville, J. G. (1983). An examination of scale-dependent dispersion coefficients. Ground Water, 21, 715–725.CrossRef Molz, F. J., Güven, O., & Melville, J. G. (1983). An examination of scale-dependent dispersion coefficients. Ground Water, 21, 715–725.CrossRef
Zurück zum Zitat Nelson, R. A., & Serra, S. (1995). Vertical and lateral variations in fracture spacing in folded carbonate sections and its relation to locating horizontal wells. Journal of Canadian Petroleum Technology, 34, 51–56.CrossRef Nelson, R. A., & Serra, S. (1995). Vertical and lateral variations in fracture spacing in folded carbonate sections and its relation to locating horizontal wells. Journal of Canadian Petroleum Technology, 34, 51–56.CrossRef
Zurück zum Zitat Neuman, S. P. (1990). Universal scaling of hydraulic conductivities and dispersivities in geologic media. Water Resources Research, 26, 1749–1758.CrossRef Neuman, S. P. (1990). Universal scaling of hydraulic conductivities and dispersivities in geologic media. Water Resources Research, 26, 1749–1758.CrossRef
Zurück zum Zitat Pickens, J. F., & Grisak, G. E. (1981). Scale-dependent dispersion in a stratified granular aquifer. Water Resources Research, 17, 1191–1211.CrossRef Pickens, J. F., & Grisak, G. E. (1981). Scale-dependent dispersion in a stratified granular aquifer. Water Resources Research, 17, 1191–1211.CrossRef
Zurück zum Zitat Prill, R. C., Johnson, A. I., & Morris, D. A. (1965). Specific yield—Laboratory experiments showing the effect of time on column drainage. U.S. Geological Survey Water-Supply Paper 1662-B. Prill, R. C., Johnson, A. I., & Morris, D. A. (1965). Specific yield—Laboratory experiments showing the effect of time on column drainage. U.S. Geological Survey Water-Supply Paper 1662-B.
Zurück zum Zitat Pryor, W. A. (1973). Permeability-porosity patterns and variations in some Holocene sand bodies. American Association Petroleum Geologists Bulletin, 57(1), 162–189. Pryor, W. A. (1973). Permeability-porosity patterns and variations in some Holocene sand bodies. American Association Petroleum Geologists Bulletin, 57(1), 162–189.
Zurück zum Zitat Ritzi, R. W., Jr., Jayne, D. F., Zahradnik, A. J., Jr., Field, A. A., & Fogg, G. E. (1994). Geostatistical modeling of heterogeneity in glaciofluvial, buried valley aquifers. Ground Water, 32, 666–674.CrossRef Ritzi, R. W., Jr., Jayne, D. F., Zahradnik, A. J., Jr., Field, A. A., & Fogg, G. E. (1994). Geostatistical modeling of heterogeneity in glaciofluvial, buried valley aquifers. Ground Water, 32, 666–674.CrossRef
Zurück zum Zitat Ronan, A. D., Prudic, D. E., Thodal, C. E., & Constantz, J. (1998). Field study and simulation of diurnal temperature effects on infiltration and variably saturated flow beneath an ephemeral stream. Water Resources Research, 34(9), 2137–2153.CrossRef Ronan, A. D., Prudic, D. E., Thodal, C. E., & Constantz, J. (1998). Field study and simulation of diurnal temperature effects on infiltration and variably saturated flow beneath an ephemeral stream. Water Resources Research, 34(9), 2137–2153.CrossRef
Zurück zum Zitat Schwartz, F. W., & Zhang, Z. (2003). Fundamentals of ground water. New York: Wiley. Schwartz, F. W., & Zhang, Z. (2003). Fundamentals of ground water. New York: Wiley.
Zurück zum Zitat Schulze-Makuch, D. (2005). Longitudinal dispersivity data and implications for scaling behavior. Ground Water, 43, 433–456.CrossRef Schulze-Makuch, D. (2005). Longitudinal dispersivity data and implications for scaling behavior. Ground Water, 43, 433–456.CrossRef
Zurück zum Zitat Stearns, D. W. (1967). Certain aspects of fracture in naturally deformed rocks. In R. E. Rieker (Ed.), National science foundation advanced science seminar in rock mechanics (pp. 97–118). Bedford, MA: Air Force Cambridge Research Laboratories. Stearns, D. W. (1967). Certain aspects of fracture in naturally deformed rocks. In R. E. Rieker (Ed.), National science foundation advanced science seminar in rock mechanics (pp. 97–118). Bedford, MA: Air Force Cambridge Research Laboratories.
Zurück zum Zitat Theis, C. V. (1935). The relation between the lowering of the piezometric surface and the rate and duration of discharge of a well using groundwater storage. Transactions. American Geophysical Union, 16, 519–524.CrossRef Theis, C. V. (1935). The relation between the lowering of the piezometric surface and the rate and duration of discharge of a well using groundwater storage. Transactions. American Geophysical Union, 16, 519–524.CrossRef
Zurück zum Zitat Todd, D. K., & Mays, L. W. (2005). Groundwater hydrology (3rd ed.). New York: Wiley. Todd, D. K., & Mays, L. W. (2005). Groundwater hydrology (3rd ed.). New York: Wiley.
Zurück zum Zitat Walton, W. C. (1960). Leaky artesian aquifer conditions in Illinois. Illinois State Water Survey Report of Investigation 39. Walton, W. C. (1960). Leaky artesian aquifer conditions in Illinois. Illinois State Water Survey Report of Investigation 39.
Zurück zum Zitat Walton, W. C. (1997). Practical aspects of ground water modeling (3rd ed.). Westerville, OH: National Ground Water Association. Walton, W. C. (1997). Practical aspects of ground water modeling (3rd ed.). Westerville, OH: National Ground Water Association.
Zurück zum Zitat Webb, E. K., & Anderson, M. P. (1996). Simulation of preferential flow in three-dimensional, heterogeneous conductivity fields with realistic internal architecture. Water Resources Research, 32, 533–545.CrossRef Webb, E. K., & Anderson, M. P. (1996). Simulation of preferential flow in three-dimensional, heterogeneous conductivity fields with realistic internal architecture. Water Resources Research, 32, 533–545.CrossRef
Metadaten
Titel
Hydrogeology Basics—Aquifer Types and Hydraulics
verfasst von
Robert G. Maliva
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-11084-0_2