Identifying causes of ground‐penetrating radar reflections using time‐domain reflectometry and sedimentological analyses
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[1] Jef Vandenberghe,et al. Comparison of laser grain size analysis with pipette and sieve analysis: a solution for the underestimation of the clay fraction , 1997 .
[2] Michael H. Powers,et al. Modeling frequency-dependent GPR , 1997 .
[3] J. Fokkema. Analysis of georadar reflection responses , 2003, Proceedings of the 2nd International Workshop onAdvanced Ground Penetrating Radar, 2003..
[4] C. L. Roberts,et al. Applications of ground-penetrating radar (GPR) to sedimentological, geomorphological and geoarchaeological studies in coastal environments , 2000, Geological Society, London, Special Publications.
[5] A. Hippel,et al. Dielectric Materials and Applications , 1995 .
[6] G. C. Topp,et al. Electromagnetic Determination of Soil Water Content Using TDR: I. Applications to Wetting Fronts and Steep Gradients , 1982 .
[7] Harry M. Jol,et al. Ground penetrating radar of northern lacustrine deltas , 1991 .
[8] Steven A. Arcone,et al. Field observations of electromagnetic pulse propagation in dielectric slabs , 1984 .
[9] Alan G. Green,et al. Mapping the architecture of glaciofluvial sediments with three-dimensional georadar , 1995 .
[10] A. P. Annan,et al. Electromagnetic determination of soil water content: Measurements in coaxial transmission lines , 1980 .
[11] L. Mayer. Deep Sea Carbonates: Acoustic, Physical, and Stratigraphic Properties , 1979 .
[12] T. Heimovaara. Design of Triple‐Wire Time Domain Reflectometry Probes in Practice and Theory , 1993 .
[13] Peter Huggenberger,et al. Radar facies: recognition of facies patterns and heterogeneities within Pleistocene Rhine gravels, NE Switzerland , 1993, Geological Society, London, Special Publications.
[14] Rosemary Knight,et al. GEOSTATISTICAL ANALYSIS OF GROUND-PENETRATING RADAR DATA : A MEANS OF DESCRIBING SPATIAL VARIATION IN THE SUBSURFACE , 1998 .
[15] L. Mayer. Deep-sea carbonates: Physical property relationships and the origin of high-frequency acoustic reflectors , 1980 .
[16] Willem Bouten,et al. A Computer-Controlled 36-Channel Time Domain Reflectometry System for Monitoring Soil Water Contents , 1990 .
[17] Rosemary Knight,et al. Relationships between Dielectric and Hydrogeologic Properties of Sand-Clay Mixtures , 1994 .
[18] S. Fagin. Seismic Modeling of Geologic Structures: Applications to Exploration Problems , 1991 .
[19] H. Fellner-Feldegg. Measurement of dielectrics in the time domain , 1969 .
[20] W. N. Herkelrath,et al. Time-Domain Reflectometry: Simultaneous Measurement of Soil Water Content and Electrical Conductivity with a Single Probe , 1984, Science.
[21] A. P. Annan,et al. Water table detection with ground‐penetrating radar , 1991 .
[22] C. Kasse. Early-Pleistocene tidal and fluviatile environments in the southern Netherlands and northern Belgium , 1988 .
[23] Willem Bouten,et al. Assessing temporal variations in soil water composition with time domain reflectometry , 1995 .
[24] Gary R. Olhoeft,et al. Petrophysical causes of electromagnetic dispersion , 1994 .
[25] U. Asprion,et al. Aquifer architecture analysis using ground-penetrating radar: Triassic and Quaternary examples (S. Germany) , 1997 .
[26] José M. Carcione. Ground‐penetrating radar: Wave theory and numerical simulation in lossy anisotropic media , 1995 .
[27] J. Bridge,et al. Ground penetrating radar: application to sandbody geometry and heterogeneity studies , 1993, Geological Society, London, Special Publications.
[28] T. J. Heimovaara,et al. Frequency dependent dielectric permittivity 0 to 1 Ghz: Time Domain Reflectometry measurements compared with Frequency Domain Network Analyser measurements , 1996 .
[29] W. A. Wensink,et al. Dielectric Properties of Wet Soils in the Frequency Range 1-3000 MHz1 , 1993 .
[30] B. Brisco,et al. Soil moisture measurement using portable dielectric probes and time domain reflectometry , 1992 .
[31] B. Warner,et al. A study of the geoelectrical properties of peatlands and their influence on ground‐penetrating radar surveying1 , 1994 .
[32] J. Bridge,et al. Large‐scale structure of Calamus River deposits (Nebraska, USA) revealed using ground‐penetrating radar , 1998 .
[33] Charles S Bristow,et al. Internal structure of aeolian dunes in Abu Dhabi determined using ground‐penetrating radar , 1996 .
[34] L. Keim,et al. Anatomy and lithofacies of an intact and seismic-scale Carboniferous carbonate platform (Asturias, NW Spain): Analogues of Hydrocarbon Reservoirs in the Pricaspian Basin (Kazakhstan) , 1998 .
[35] David A. Casper,et al. Simulation of ground-penetrating radar waves in a 2-D soil model , 1996 .
[36] R. Schulin,et al. Calibration of time domain reflectometry for water content measurement using a composite dielectric approach , 1990 .
[37] W. P. Clement,et al. Seismic reflection and ground-penetrating radar imaging of a shallow aquifer , 1998 .
[38] Fabrice Hollender,et al. Modeling ground‐penetrating radar wave propagation and reflection with the Jonscher parameterization , 1998 .
[39] A. Peter Annan,et al. Ground‐penetrating radar monitoring of a controlled DNAPL release: 200 MHz radar , 1994 .
[40] J. Stafleu,et al. Seismic Models of a Shelf-margin Depositional Sequence: Upper San Andres Formation, Last Chance Canyon, New Mexico , 1994 .
[41] Steven A. Arcone. Field observations of electromagnetic pulse propagation in dielectric slabs , 1984 .
[42] S. Zegelin,et al. Improved field probes for soil water content and electrical conductivity measurement using time domain reflectometry , 1989 .
[43] D. FitzGerald,et al. Radar facies of paraglacial barrier systems: coastal New England, USA , 1998 .
[44] R. A. Overmeeren,et al. Radar facies of unconsolidated sediments in The Netherlands: A radar stratigraphy interpretation method for hydrogeology , 1998 .
[45] A. P. Annan,et al. Ground-penetrating radar for high-resolution mapping of soil and rock stratigraphy , 1989 .