Application of frequency-domain helicopter-borne electromagnetics for groundwater exploration in urban areas
Tài liệu tham khảo
Auken, 2009, An integrated processing scheme for high-resolution airborne electromagnetic surveys, the SkyTEM system, Explor. Geophys., 40, 184, 10.1071/EG08128
Bakker, M., Bosch, A., Gunnink, J., 2006. Groningen valley. In: BurVal Working Group: Kirsch, R., Rumpel, H.-M., Scheer, W., Wiederhold, H. (Eds.), Groundwater Resources in Buried Valleys – a Challenge for Geosciences. Leibniz Institute for Applied Geosciences, Hannover, pp. 241–250.
Beamish, 2003, Airborne EM footprints, Geophys. Prospect., 51, 49, 10.1046/j.1365-2478.2003.00353.x
Beard, 2000, Comparison of methods for estimating earth resistivity from airborne electromagnetic measurements, J. Appl. Geophys., 45, 239, 10.1016/S0926-9851(00)00032-X
Bosch, 2009, Airborne electromagnetic measurements as basis for a 3D geological model of an Elsterian incision, Zeitschrift der Deutschen Gesellschaft für Geowissenschaften, 160, 249, 10.1127/1860-1804/2009/0160-0258
Boulton, 1995, Groundwater flow beneath ice sheets: Part II–Its impact on glacier structures and moraine formation, Q. Sci. Rev., 14, 563, 10.1016/0277-3791(95)00058-W
Boulton, 1995, Groundwater flow beneath ice sheets: Part I–Large scale patterns, Q. Sci. Rev., 14, 545, 10.1016/0277-3791(95)00039-R
BurVal Working Group: Kirsch, R., Rumpel, H.-M., Scheer, W., Wiederhold, H. (Eds.), 2006. Groundwater resources in buried valleys – a challenge for geosciences. Leibniz Institute for Applied Geosciences, Hannover.
Christiansen, 2006, The transient electromagnetic method–airborne TEM, 209
Cook, 1992, A helicopter-borne electromagnetic survey to delineate groundwater recharge rates, Water Resour. Res., 28, 2953, 10.1029/92WR01560
Davis, 2006, Pendulum motion in airborne HEM systems, Explor. Geophys., 37, 355, 10.1071/EG06355
DLR, 2005a. Indonesia/Sumatra – Banda Aceh – Map Sheet 042152, 1:40000, Center for Satellite based Crisis Information – German Remote Sensing Data Center/German Aerospace Center (DLR).
DLR, 2005b. Indonesia/Sumatra – Lho’Nga – Map Sheet 042123 (041124), 1:40000. Center for Satellite based Crisis Information – German Remote Sensing Data Center/German Aerospace Center (DLR).
Eberle, 2006, Identification of buried valleys using the BGR helicopter-borne geophysical system, Near Surf. Geophys., 4, 125, 10.3997/1873-0604.2005038
Fitterman, 1998, Helicopter EM mapping of saltwater intrusion in Everglades National Park, Florida, Explor. Geophys., 29, 240, 10.1071/EG998240
Fitterman, 2004, Effect of bird maneuver on frequency-domain helicopter EM response, Geophysics, 69, 1203, 10.1190/1.1801937
Flathe, 1955, Possibilities and limitations in applying geoelectrical methods to hydrogeological problems in the coastal areas of north-west Germany, Geophys. Prospect., 3, 95, 10.1111/j.1365-2478.1955.tb01363.x
Fountain, 1998, Airborne electromagnetic systems–50 years of development, Explor. Geophys., 29, 1, 10.1071/EG998001
Fountain, D., 2008. 60 years of airborne EM – Focus on the last decade. In: Proceeding on AEM2008 – 5th International Conference on Airborne Electromagnetics, 28–30 May 2008, Haikko Manor, Finland.
Fraser, 1978, Resistivity mapping with an airborne multicoil electromagnetic system, Geophysics, 43, 144, 10.1190/1.1440817
Fritsche, 2000, Influences of deep well injection of waste brine on the environment in the Werra potash region, Germany, 867
Gausland, A.K., 1998. Distribution and genesis of Late Pleistocene buried channels in the central North Sea. Cand. Scient Thesis, University of Oslo.
Gunnink, 2009
Hecht, 2000, Zur Entwicklung der Salzwasserversenkung im Werra-Kaligebiet, Geowissenschaftliche Mitteilungen von Thüringen, 9, 125
Hodges, G., Siemon, B., 2008. Comparative analysis of one-dimensional inversions of helicopter-borne frequency-domain electromagnetic data. In: Proceeding on AEM2008 – 5th International Conference on Airborne Electromagnetics, 28–30 May 2008, Haikko Manor, Finland.
Huuse, 2000, Overdeepended quaternary valleys in the eastern Danish North Sea: morphology and origin, Q. Sci. Rev., 19, 1233, 10.1016/S0277-3791(99)00103-1
Huuse, 2003, Geophysical investigations of buried quaternary valleys in the formerly glaciated NW European lowland: Significance for groundwater exploration, J. Appl. Geophys., 53, 153, 10.1016/j.jappgeo.2003.08.003
Jordan, 2002, Die Tektonik des nordwestlichen Harzrandes–Ergebnisse der Hubschrauber-Elektromagnetik [The tectonics of the northwestern margin of the Harz Mountains–Results of a helicopter electromagnetic survey], Zeitschrift der Deutschen Geologischen Gesellschaft, 153, 31, 10.1127/zdgg/153/2002/31
Keller, 1966
Kirsch, 2006, Hydrogeophysical properties of permeable and low permeable rocks, 1
McNeill, 1980
McNeill, 1990, Use of electromagnetic methods for groundwater studies, vol. 1, 191
Naudy, 1968, Non-linear filtering applied to aeromagnetic profiles, Geophys. Prospect., 16, 171, 10.1111/j.1365-2478.1968.tb01969.x
Palacky, 1981, Electromagnetic prospecting for groundwater in Precambrian terrains in the Republic of Upper Volta, Geophys. Prospect., 29, 932, 10.1111/j.1365-2478.1981.tb01036.x
Paterson, 1987, Airborne geophysical exploration for ground water, Ground Water, 25, 41, 10.1111/j.1745-6584.1987.tb02114.x
Paine, 2003, Determining salinization extent, identifying salinity sources, and estimating chloride mass using surface, borehole, and airborne electromagnetic induction methods, Water Resour. Res., 39, 3.1, 10.1029/2001WR000710
Paine, 1997, Identifying oil-field salinity sources with airborne and ground-based geophysics: a West Texas example, The Leading Edge, 16, 1603, 10.1190/1.1437534
Paine, 2005, Airborne Hydrogeophys, 333, 10.1007/1-4020-3102-5_11
Röttger, 2005, Multifrequency airborne EM surveys – a tool for aquifer vulnerability mapping, vol. 13, 643
Rubin, 2005
Sengpiel, 1983, Resistivity/depth mapping with airborne electromagnetic survey data, Geophysics, 48, 181, 10.1190/1.1441457
Sengpiel, 1990, Theoretical and practical aspects of groundwater exploration using airborne electromagnetic techniques, 149
Sengpiel, 1992, Application of airborne electromagnetics to groundwater exploration in Pakistan, Zeitschrift der Deutschen Geologischen Gesellschaft, 143, 254, 10.1127/zdgg/143/1992/254
Sengpiel, 1981, Locating the freshwater/salt water interface on the island of Spiekeroog by airborne EM resistivity/depth mapping, Geologisches Jahrbuch C, 29, 255
Sengpiel, 1998, Examples of 1D inversion of multifrequency AEM data from 3D resistivity distributions, Explor. Geophys., 29, 133, 10.1071/EG998133
Sengpiel, 2000, Advanced inversion methods for airborne electromagnetics, Geophysics, 66, 1983, 10.1190/1.1444882
Siemon, 2001, Improved and new resistivity–depth profiles for helicopter electromagnetic data, J. Appl. Geophys., 38, 65, 10.1016/S0926-9851(00)00040-9
Siemon, 2009, Levelling of frequency-domain helicopter-borne electromagnetic data, J. Appl. Geophys., 67, 206, 10.1016/j.jappgeo.2007.11.001
Siemon, 2009, A review of helicopter-borne electromagnetic methods for groundwater exploration, Near Surf. Geophys., 7, 629, 10.3997/1873-0604.2009043
Siemon, 2004, Helicopter-borne electromagnetic investigation of coastal aquifers in North-West Germany, Zeitschrift für Geologische Wissenschaften, 32, 385
Siemon, 2004, Grundwassererkundung in Namibia mit Hilfe der Hubschraubergeophysik, DVGW energie/wasser-praxis, 02/2004, 12
Siemon, B., Sengpiel, K.-P., 1997. Helicopter-borne electromagnetic groundwater exploration survey in the Kuiseb Dune Area, Central Namib Desert, in: Proceedings of SAGA Conference ‘97, 28–30 September1997, Swakopmund, Namibia, pp. 137–142.
Siemon, 2007, HELP ACEH–A post-tsunami helicopter-borne groundwater project along the coasts of Aceh, Northern Sumatra, Near Surf. Geophys., 5, 231, 10.3997/1873-0604.2007005
Siemon, 2002, Investigation of hazardous waste sites and their environment using the BGR helicopter-borne geophysical system, J. Environ. Eng. Geophys., 7, 169, 10.4133/JEEG7.4.169
Siemon, B., M., Ullmann, A., Vasterling, M., Meyer, U., Beer, W.W., Plümacher, J., 2010. Airborne electromagnetic survey of the groundwater mineralisation in the Potash Mining District of the Werra River, Germany. In: Proceedings of Near Surface 2010, EAGE, Zurich, CH.
Smith, B.D., Sengpiel, K.P., Plesha, J., Horton, R.J., 1992. Airborne electromagnetic mapping of subsurface brine, Brookhaven Oil Field, Mississippi. In: Proceedings of SEG Annual Meeting, Tulsa, Oklahoma, pp. 340-343.
Smith, 2004, Using airborne electromagnetics surveys to investigate the hydrogeology of an area near Nyborg, Denmark, Near Surf. Geophys., 3, 123, 10.3997/1873-0604.2004009
Tølbøll, R.J., 2007. The application of frequency-domain helicopter-borne electromagnetic methods to hydrogeological investigations in Denmark. PhD dissertation, Department of Earth Sciences, University of Aarhus, Denmark.
Valleau, 2000, HEM data processing – a practical overview, Explor. Geophys., 31, 584, 10.1071/EG00584
Viezzoli, A., Edsen, A., Auken, E., Silvestri, S., 2009. The use of satellite remote sensing and helicopter TEM data for the identification and characterization of contaminated land. In: Proceedings of 15th European Meeting of Environmental and Engineering Geophysics – Near Surface 2009, 7–9 September 2009, Dublin, Ireland.
Weidelt, P., 1981. Report on dipole induction by a thin sheet in a conductive halfspace with an overburden. Federal Institute for Geosciences and Natural Resources, BGR Archives No. 89727, Hannover.
Wynn, 2005, Airborne geophysics versus groundwater – An example, 635