Geoscience Reference
In-Depth Information
Fitterman, D.V., and Stewart, M.T., Transient electromagnetic sounding for groundwater, Geophysics, 51,
995-1005, 1986.
Freeland, R.S., Branson, J.L., Ammons, J.T., and Leonard, L.L., Surveying perched water on anthropogenic
soils using non-intrusive imagery, Trans. ASAE , 44, 1955-1963, 2001.
Freeland, R.S., Yoder, R.E., Ammons, J.T., and Leonard, L.L., Mobilized surveying of soil conductivity using
electromagnetic induction, Appl. Eng. Agric. , 18, 121-126, 2002.
Gardner, C.M.K., Bell, J.P., Cooper, J.D., Dean, T.J., Hodnett, M.G., and Gardner, N., Soil water content, in
Soil Analysis—Physical Methods , Smith, R.A. and Mullings, C.E., Eds., Marcel Dekker, New York,
pp. 1-73, 1991.
Gardner, C.M.K., Dean, T.J., and Cooper, J.D., Soil water content measurement with a high-frequency capaci-
tance sensor, J. Agric. Eng. Res. , 71, 395-403, 1998.
George, R.J., and Woodgate, P., Critical factors affecting the adoption of airborne geophysics for management
of dryland salinity, Exploration Geophysics , 33, 84-89, 2002.
George, R.J., Beasley, R., Gordon, I., Heislers, D., Speed, R., Brodie, R., McConnell, C., and Woodgate, P.,
The national airborne geophysics project—National report. Evaluation of airborne geophysics for catch-
ment management (see www.ndsp.gov.au), 1998.
Giese, K., and Tiemann, R., Determination of the complex permittivity from thin-sample time domain reflec-
tometry: Improved analysis of the step response waveform, Adv. Mol. Relax. Processes , 7, 45-49, 1975.
Gorucu, S., Khalilian, A., Han, Y.J., Dodd, R.B., Wolak, F.J., and Keskin, M., Variable depth tillage based on
geo-referenced soil compaction data in coastal plain region of South Carolina, ASAE Paper No. 011016,
2001 ASAE Annual International Meeting, 30 July-1 August 2001, Sacramento, CA, ASAE St. Joseph,
MI, 2001.
Greenhouse, J.P., and Slaine, D.D., The use of reconnaissance electromagnetic methods to map contaminant
migration, Ground Water Monit. Rev. , 3, 47-59, 1983.
Greenhouse, J.P., and Slaine, D.D., Geophysical modelling and mapping of contaminated groundwater around
three waste disposal sites in southern Ontario, Can. Geotech. J. , 23, 372-384, 1986.
Haines, B.L., Waide, J.B., and Todd, R.L., Soil solution nutrient concentrations sampled with tension and
zero-tension lysimeters: Report of discrepancies, Soil Sci. Soc. Am. J. , 46, 658-661, 1982.
Halvorson, A.D., and Rhoades, J.D., Field mapping soil conductivity to delineate dryland seeps with four-
electrode techniques, Soil Sci. Soc. Am. J. , 44, 571-575, 1976.
Hanson, B.R., and Kaita, K., Response of electromagnetic conductivity meter to soil salinity and soil-water
content, J. Irrig. Drain. Eng. , 123, 141-143, 1997.
Hart, G.L., and Lowery, B., Axial-radial influence of porous cup soil solution samplers in a sandy Soil, Soil
Sci. Soc. Am. J. 61, 1765-1773, 1997.
Heimovaara, T.J., and Bouten, W., A computer controlled 36-channel time-domain reflectometry system for
monitoring soil water contents, Water Resour. Res. , 26, 2311-2316, 1990.
Heimovaara, T.J., Focke, A.G., Bouten, W., and Verstraten, J.M., Assessing temporal variations in soil water
composition with time domain reflectometry, Soil Sci. Soc. Am. J. , 59, 689-698, 1995.
Hendrickx, J.M.H., Baerends, B., Raza, Z.I., Sadig, M., and Chaudhry, M.A., Soil salinity assessment by
electromagnetic induction of irrigated land, Soil Sci. Soc. Am. J. , 56, 1933-1941, 1992.
Hendrickx, J.M.H., Borchers, B., Corwin, D.L., Lesch, S.M., Hilgendorf, A.C., and Schlue, J., Inversion of soil
conductivity profiles from electromagnetic induction measurements: Theory and experimental verifica-
tion, Soil Sci. Soc. Am. J. , 66, 673-685, 2002.
Herkelrath, W.N., Hamburg, S.P., and Murphy, F., Automatic, real-time monitoring of soil moisture in a remote
field area with time domain reflectometry, Water Resour. Res. , 27, 857-864, 1991.
Herrero, J., Ba, A.A., and Aragues, R., Soil salinity and its distribution determined by soil sampling and
electromagnetic techniques, Soil Use Manage. , 19, 119-126, 2003.
Inman, D.J., Freeland, R.S., Yoder, R.E., Ammons, J.T., and Leonard, L.L., Evaluating GPR and EMI for
morphological studies of loessial soils, Soil Sci. , 166, 622-630, 2001.
Inoue, Y., Watanabe, T., and Kitamura, K., Prototype time-domain reflectometry probes for measurement of
moisture content near the soil surface for applications to “on the move” measurements, Agric. Water
Manage. , 50, 41-52, 2001.
Jacobsen, O.H., and Schjønning, P., A laboratory calibration of time domain reflectometry for soil water mea-
surements including effects of bulk density and texture, J. Hydrol. (Amsterdam) , 151, 147-157, 1993.
Jaynes, D.B., Mapping the areal distribution of soil parameters with geophysical techniques, in Applications
of GIS to the Modeling of Non-point Source Pollutants in the Vadose Zone , Corwin, D.L., and Loague,
K., Eds., SSSA Special Publication No. 48, SSSA, Madison, WI, pp. 205-216, 1996.
Search WWH ::




Custom Search