Page 127 - ARqUEOlOGiA NO PElOURiNhO
P. 127
O DIÁLOGO COM OUTROS CAMPOS DO SABER
COIROLO, A. D., BOKSAR, R. B. In Arqueologia de Tierras McGRATH, R. J.; STYLES, P.; THOMAS, E.; NEALE, S. Integrated
Bajas. Comisión Nacional de Arqueologia, Ministerio de High-Resolution Geophysical Investigations as Potential
Educación y Cultura, Montevideo, Uruguay, 2000, p. 207- Tools for Water Resource Investigations in Karst Terrain.
226. Environmental Geology, 2002, n. 42, p. 552- 557.
DANIELS, J. J. Surface Penetrating Radar. London, The PENNER, G. C. E. Estudo de caso da contaminação do solo
Institution of Electrical Engineers, 1996. e da água subterrânea por deposição no solo de resíduos
vinculados a óleos lubrificantes, São Carlos, 2005. Tese
DANIELS, J. J.; ROBERTS, R.; VENDL, M. Ground Penetrating (doutorado), Escola de Engenharia de São Carlos, USP.
Radar for the Detection of Liquid Contaminants. Journal
SANDMEIER, K. J. Reflexw, version 4.5 for Windows 9x/2000/
of Applied Geophysics, 1995, n. 33, p. 195-207.
NT/XP, 2008. Program for the Processing of Seismic,
DAVIS, J. L.; ANNAN, A. P. Ground Penetrating Radar for Acoustic or Electromagnetic Reflection, Refraction and
High Resolution Mapping of oil and rock stratigraphy. Transmission Data. Manual do Software.
Geophysical Prospecting, 1989, n. 37, p. 531-551.
SAUCK, W. A. A Model for the Resistivity Structure of LNAPL
GRANDJEAN, G.; GOURRY, J. C.; BITRI, A. Evaluation of GPR Plumes and their Environs in Sandy Sediments. Journal of
Techniques for Civil-Engineering Applications: Study on a Applied Geophysics, 2000, n. 44, p. 151-165.
Test Site. Journal of Applied Geophysics, 2000, n. 45, p. 141-
SAUCK, W. A.; ATEKUANA, E.A.; NASH, M. S.. High
156. Conductivities Associated With an LNAPL Plume Imaged
by Integrated Geophysical Techniques. Journal of
JOL, H. M.; SMITH, D. G. Ground Penetrating Radar:
Environmental and Engineering Geophysics, 1998, v. 2, n. 3,
Antenna Frequencies and maximum Probable Depths of
p. 203-212.
Penetration in Quaternary Sediments. Journal of Applied
Geophysics, 1995, n. 33, p. 93-100. SHIRAIWA, S.; LISOVSKY, S. P.; ELIS, V. R.; PORSANI, J. L.;
BORGES, W. R. Estudos geofísicos integrados no lixão
KRUK, J. van der; SLOB, E. C.; FOKKEMA, J. T. Background
de Cuiabá, MT, Brasil – Resultados preliminares. Revista
of Ground-Penetrating Radar Measurements. Geologie en
Brasileira de Geofísica, 2002, v. 20, n. 3, p. 181-186.
Mijnbouw, 1999, n. 77, p. 177-188.
TOPP, G. C.; DAVIS, J. L.; ANNAN, A. P. Electromagnetic
MANZANILLA, L., BARBA, L., CHAVEZ, R., TEJERO, A., Determination of Soil Water Content: Measurements
CIFUENTES, G. & PERALTA, N. (1994). Caves and geophysics: in Coaxial Transmission Lines. Water Resources Research,
an approximation to the underworld of Teotihuacan, 1980, n. 16, p. 574-582.
Mexico. Archaeometry 36, 141–157.
ZENG, X.; McMECHAN, G. A. GPR Characterization of Buried
MASON, R. J. 1984 An Unorthodox Magnetic Survey of Tanks and Pipes. Geophysics, 1997, v. 62, n. 3, p. 797-806.
128 a Large Forested Historic Site. Historical Archaeology
18(2):54-63.
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