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Bibliography Geophysical Methods, Theory, and Discussion...
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Gucunski, N., and R. D. Woods, 1991. Instrumentation for SASW Testing. Geotechnical Special Publication No. 29, Recent Advances in Instrumentation, Data Acquisition, and Testing in Soil Dynamics, New York: American Society of Civil Engineers, pp. 1-16.
Joh, S. H., 1997. Advances in Interpretation and Analysis Techniques for Spectral-Analysis-of-Surface-Waves (SASW) Measurements. Ph.D. Dissertation, University of Texas at Austin.
Kalinski, M.E., 1998. Determination of VS and GMAX Using Surface Wave Measurements in Cased and Uncased Boreholes. Ph.D. Dissertation, University of Texas at Austin.
Lai, C.J., 1998. Simultaneous Inversion of Rayleigh Phase Velocity and Attenuation for Near-surface Site Characterization. Ph.D. Dissertation, Georgia Institute of Technology.
Nolet, G., 1975 Higher Rayleigh Modes in Western Europe. Geophysical Research Letters, Vol. 2, No. 60.
Olson Engineering Web Site. Spectral Analysis of Surface Waves (SASW). http://www.olsonengineering.com/sasw.html
Park., C.B., R. D. Miller, and J. Xia, 1999. Multichannel Analysis of Surface Waves. Geophysics, Vol. 64, No. 3, pp. 800-808.
Phillips, C., G. Casante, D. Hutchinson, 2002. The Innovative Use of Seismic Surface Waves for Void Detection and Material Characterization. Proceedings of SAGEEP '02, Las Vegas, NV.
Rit., F. E., Jr., J. R. Hall, Jr., and R. D. Woods, 1970. Vibrations of Soils and Foundations. Prentice Hall, Englewood Cliffs, N.J.
Rix, G. J., and E. A. Leipski, 1991. Accuracy and Resolution of Surface Wave Inversion. Geotechnical Special Publication No. 29: Recent Advances in Instrumentation, Data Acquisition, and Testing in Soil Dynamics, New York: American Society of Civil Engineers, pp 17-32.
Roesset, J.M., D. Chang, and K. H. Stokoe, II, 1991. Comparison of 2-D and 3-D Models for Analysis of Surface Wave Tests. Proceedings of Fifth International Conference on Soil Dynamics and Earthquake Engineering, pp. 111-126.
Roubal, M., 2000. Evaluating and Locating Engineering Structures Using Non-destructive Testing Technology. Proceedings of First International Conference on the Application of Geophysical Methodologies & NDT to Transportation Facilities and Infrastructure, Dec 2000. www.modot.state.mo.us/g2000/PAPERS/CAT2/GEOPH51.PDF
Spectral Analysis of Surface Waves (SASW), http://www.force-institute.com/ciad/sasw.htm
Stokoe, K. H., II, S. G. Wright, J. M. Roesset, R. C. Gauer, and M. Sedighi-Manesh, 1990. In situ Measurements of Stiffness Profiles in Ocean Bottom Materials Using the SASW Method. Proceedings of Offshore Technology Conference, Houston, Texas, OTC Paper No. 6234, pp. 299-305.
Stokoe, K. H.,II, G. L. Rix, and S. Nazarian, 1989. In situ Seismic Testing with Surface Waves. Proceedings of Twelfth International Conference on Soil Mechanics and Foundation Engineering, Vol. 1, Rio de Janeiro, Brazil, pp. 330-334.
Tokimatsu, K., 1995. Geotechnical Site Characterization Using Surfaces Waves. Proceedings of First International Conference on Earthquake Geotechnical Engineering, IS-Tokyo, '95, Tokyo, Balkema, Rotterdam, pp. 1333-1368.
Woods, R. D., 1968. Screening of Surface Waves in Soils. Journal of Soil Mechanics and Foundation Engineering, Proceedings of ASCE, 94 (SM4), pp. 951-979.
Zywicki, D. J., 1999. Advanced Signal Processing Methods Applied to Engineering Analysis of Seismic Surface Waves. Ph.D. Dissertation, Georgia Institute of Technology.
Zywicki, D. J. Advanced Signal Processing Methods Applied to Engineering Analysis of Seismic Surface Waves. http://www.zywicki.com/dissert.htm
Butler, K. E., R. Russell, A. Kepic, M. and Maxwell, 1996. Measurement of the Seismoelectric Response from a Shallow Boundary. Geophysics, Vol. 61, No. 06, pp. 1769-1778.
Haartsen, M. and R. Pride, 1994. Modeling of Coupled Electroseismic Wave Propagation from Point Sources in Layered Media. Abstracts, Annual Meeting, Society Of Exploration Geophysicists, pp. 1155-1158.
Haartsen, M. W., Z. Zhu, and M. Toksoz,, 1995. Seismoelectric Experimental Data and Modeling in Porous Layer Models at Ultrasonic Frequencies. Abstracts, Annual Meeting, Society Of Exploration Geophysicists, pp. 696-699.
Kindij, E., 1960. Discussion of the Electroseismic Effect, by Martner, S. T., et al (GEO-24-02-0297-0308). Geophysics, Vol. 25, No. 01, p. 325.
Long, L. T., and W. Rivers, 1975. Field Measurement of the Electroseismic Response. Geophysics, Vol. 40, No. 02, pp. 233-245.
Martner, S. T., and N. Sparks, 1959. The Electroseismic Effec. Geophysics, Vol. 24, No. 02, pp. 297-308. (* Discussion in GEO-25-01-0325-0325)
Mikhailov, O. V., J. Queen, and N. Toksoz, 1997a. Using Borehole Electroseismic Measurements to Detect and acterize Fractured (permeable) zones. Abstracts, Annual Meeting, Society Of Exploration Geophysicists, pp. 1981-1984.
Mikhailov, O. V., M. Haartsen, and N. Toksoz, 1997b. Electroseismic Investigation of the Shallow Subsurface: Field Measurements and Numerical Modeling. Geophysics, Vol. 62, No. 01, pp. 97-105.
Millar, J, and R. Clarke. Electrokinetic Techniques for Measurement of Rock Permeability. Company Brochure from GroundFlow Ltd.
Murthy, Y. S., 1985. First Results on the Direct Detection of Groundwater by Seismoelectric Effect - A Field Experiment. ASEG 13th Geophysical Conference, Australian Society Of Exploration Geophysicists, Vol. 16, pp. 254-256.
Pride, S. and W. Haartsen, 1993. Modeling Electroseismic Wave Phenomena in Layered Media. 61st Meeting of the European Association of Exploration Geophysicists, Extended Abstracts, European Association Of Exploration Geophysicists, Session:D017.
Pride, S. R., and F. Morgan, 1991. Electrokinetic Dissipation Induced by Seismic Waves. Geophysics, Vol. 56, No. 07, pp. 914-925.
Pride, S. R., T. Madden, and N. Toksoz, 1992. Theoretical Modeling of the Electroseismic Effect. 61st Meeting of the European Association of Exploration Geophysicists, Extended Abstracts, European Association Of Exploration Geophysicists, pp. 348-349.
Ramboll Web Site. New Seismic Method for Mapping of Groundwater, http://www.ramboll.dk/other/uk/geotechnology/pulled_array_seismic.htm.
Russell, R. D., K. Butler, A. Kepic, and M. Maxwell, 1997. Seismoelectric Exploration. The Leading Edge, Vol. 16, No. 11, pp. 1611-1615.
Schirov, M., and A. Legchenko, 1991. A New Direct Non-invasive Groundwater Detection Technology for Australia. Exploration Geophysics.
Shankar, R.K., Groundwater Exploration. 20th WEDC Conference, http://www.lboro.ac.uk/departments/cv/wedc/papers/20/sessiong/ravi.pdf.
Thompson, A. H., and G. Gist, 1991. Electroseismic Prospecting. Abstracts, Annual Meeting, Society Of Exploration Geophysicists, pp. 425-427.
Thompson, A. H., and G. Gist, 1993. Geophysical Applications of Electrokinetic Conversion. The Leading Edge, Vol. 12, No. 12, pp. 1169-1173.
Zhu, Z., and D. Toksoz, 1999. Seismoelectric and Seismomagnetic Measurements in Fractured Borehole Models. Abstracts, Annual Meeting, Society Of Exploration Geophysicists, pp. 144-147.
Nuclear Magnetic Resonance (NMR)
Bernard, J., 1997. The Proton Magnetic Resonance Method for Groundwater Investigations. IRIS web manual.
Fox, R. A., 1987. Magnetic Resonance Imaging of the Body. ASEG 13th Geophysical Conference, Australian Society Of Exploration Geophysicists, Vol. 18, pp. 58-59.
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Goldman, G., M. Rabinovich, and I. Rabinovich, 1996. Detection of the Water Level in Fractured Phreatic Aquifers using NMR Geophysical Measurements. Journal of Applied Geophysics.
Goldman, M., B. Rabinovich, M. Rabinovich, D. Gilad, I. Gev, and M. Hurlimann, 1997. Advances in the Characterization of Pore Geometry and Pore Fluids by Nuclear Magnetic Resonance. Abstracts, Annual Meeting, Society Of Exploration Geophysicists, pp. 1934-1937.
Hurlimann, M. D., 1997. Advances in the Characterization of Pore Geometry and Pore Fluids by Nuclear Magnetic Resonance. Abstracts, Annual Meeting, Society Of Exploration Geophysicists, pp. 1934-1937.
IRIS Instruments, 1997. NUMIS-Surface PMR System for Water Prospecting-Maintenance Manual.
IRIS Instruments, 1997. Some Recent Publications on the Proton Magnetic Resonance Method Applied to Groundwater Investigations. Prepared for US Department of Energy. Agreement No. DE-FG07-96ER14732.
IRIS Instruments. NUMIS Sounding Inversion Program Manual.
IRIS Instruments. NUMIS-Surface PMR System for Water Prospecting, Users Guide.
Jackson, J. A., 1981. New NMR Well-logging/Fracture Mapping Technique with Possible Application of Squid NMR Detection. In Overton, W. C., Jr., Ed., SQUID Applications in Geophysics, Society Of Exploration Geophysicists, pp. 161-165.
Knight, R., T. Bryar, and C. Daughney, 1999. Laboratory Studies to Assess the Use of Nuclear Magnetic Resonance for Near surface Applications. Abstracts, Annual Meeting, Society of Exploration Geophysicists.
Legchenko, A. V., Shushakov, O. A., Perrin, J. A. and Portselan, A. A., 1995, Noninvasive NMR study of subsurface aquifers in France: Annual Meeting Abstracts, Society Of Exploration Geophysicists, 364-367.
Legchenko, A., 1996a. Some Aspects of the Performance of the Surface NMR Method. Abstracts, Annual Meeting, Society of Exploration Geophysicists, pp. 936-939.
Legchenko, A., 1996b. A Practical Accuracy of the Surface NMR Measurements. 61st Meeting European Association of Exploration Geophysicists, Extended Abstracts, European Association Of Exploration Geophysicists, Session:M025.
Legchenko, A., 1998. Inversion of Surface NMR Data. Geophysics, Vol. 63, No. 01, pp. 75 84.
Maxwell, S. and Segel, S. L., 1985, A superfast NMR determination of the proton content of rocks: Annual Meeting Abstracts, Society Of Exploration Geophysicists, Session BHG5.6.
Mohnke, O. and U. Yaramanci, 1999. A New Inversion Scheme for Surface NMR Amplitudes Using Simulated Annealing. 61st Meeting of the European Association of Exploration Geophysicists, Extended Abstracts, European Association Of Exploration Geophysicists, Session 2027.
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New Mexico Institute of Mining and Technology, 1998. Nuclear Magnetic Resonance Imaging of Water Content in the Subsurface. Blackhawk Geometrics, Inc.
Schirov, M., A. Legchenko, and G. Creer, 1991. A New Direct Non-invasive Groundwater Detection Technology for Australia. ASEG 13th Geophysical Conference, Australian Society Of Exploration Geophysicists, Vol. 12, pp. 333-338.
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Trushkin, D. V., O. Shushakov, and A. Legchenko, 1994. The Potential of a Noise-Reducing Antenna for Surface NMR Groundwater Surveys in the Earth's Magnetic Field. Geophysical Prospecting, Vol. 42, No. 07, pp. 855-862.
Trushkin, D. V., O. Shushakov, and A. Legchenko, 1995. Surface NMR Applied to an Electroconductive Medium. Geophysical Prospecting, Vol. 43, No. 05, pp. 623-633.
Yaramanci, U., G. Lange, and K. Knodel, 1998. Effects of Regularization in the Inversion of Surface NMR Measurements. 61st Meeting of the European Association of Exploration Geophysicists, Extended Abstracts, European Association Of Exploration Geophysicists, Session:10-18.
Yaramanci, U., G. Lange, and M. Hertrich, 1999. Surface NMR Combined with Geoelectrics and Radar for Aquifer Studies in Nauen, Berlin. 61st Meeting European Association of Exploration Geophysicists, Extended Abstracts, European Association Of Exploration Geophysicists, Session:2028.
Crosshole Sonic Logging (CSL), CSL Tomography (CSLT)
Finno, R. J., and P. Champy, 1997. Cross-hole Sonic Logging Evaluation of Drilled Shafts at the Northwestern University National GeoTechnical Experimentation Site, Final Report to the Infrastructure Technology Institute. http://www.iti.northwestern.edu/projects/NDE/
Hanna, K., K. Haramy, K, A. Rock, and B. Hoekstra, 2001. Three-Dimensional Tomographic Imaging for Deep Foundation Integrity Testing Case Studies. Proceedings of 52nd Highway Geology Symposium, Allegheny County, Maryland.
Hanna, K., K. Haramy, K, A. Rock, and B. Hoekstra, 2000. Three-Dimensional Tomographic Imaging for Deep Foundation Integrity Testing. Proceedings of First International Conference on the Application of Geophysical Methodologies & NDT to Transportation Facilities and Infrastructure. http://www.modot.state.mo.us/g2000/PAPERS/CAT4/GEOPH54.PDF
Haramy, K. Y, and N. Mekic-Stall, 2000. Cross-hole Sonic Logging and Tomographic Imaging Surveys to Evaluate the Integrity of Deep Foundations - Case Studies. FHWA, www.cflhd.gov/CSL-Tomo/
Haramy, K. Y, and N. Mekic-Stall, 2000. Evaluation of Drilled Shafts at Piney Creek Bridge Using Cross-hole Sonic Logging Data and 3D Tomographic Imaging Method. Proceedings of First International Conference on the Application of Geophysical Methodologies & NDT to Transportation Facilities and Infrastructure. www.modot.state.mo.us/g2000/PAPERS/CAT4/GEOPH49.PDF
InfraSeis Web Site, www.infraseis.com/ust.htm
Jalinoos, F., et al, 1995. Ultrasonic Cross-hole and Cross-medium Tomography for the Detection of Defects in Structural Concrete. Proceedings of SAGEEP '95, Orlando, FL.
Mekic-Stall, N., P. Sirles, and R. Grimm, 2002. 2D and 3D Cross-hole Sonic Logging Tomography (CSLT) versus Cross-hole Sonic Logging (CSL) for Drilled Shafts. U.S. Department of Transportation, Federal Highways Administration, Geophysics 2002, Los Angeles, California.
Olson Engineering Web Site. Cross-hole Sonic Logging. http://www.olsonengineering.com/CSL.html
Piletest.com, Pile Integrity Sonic Analyzer and Cross-hole Ultrasonic Analyzer. Products and Services- Network Advertisement.
Test Method Review- A Comparison of Gamma/gamma and Cross-hole Sonic Logging. http://members.aol.com/ndtman1/papers/gammacsl.zip
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