Frequency-dependent attenuation analysis of ground-penetrating radar data

被引:80
作者
Bradford, John H. [1 ]
机构
[1] Boise State Univ, Ctr Geophys Investigat Shallow Subsurface, Boise, ID 83725 USA
关键词
D O I
10.1190/1.2710183
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
In the early 1990s, it was established empirically that, in many materials, ground-penetrating radar (GPR) attenuation is approximately linear with frequency over the bandwidth of a typical pulse. Further, a frequency-independent Q* parameter characterizes the slope of the band-limited attenuation versus frequency curve. Here, I derive the band-limited Q* function from a first-order Taylor expansion of the attenuation coefficient. This approach provides a basis for computing Q* from any arbitrary dielectric permittivity model. For Cole-Cole relaxation, I find good correlation between the first-order Q* approximation and Q* computed from linear fits to the attenuation coefficient curve over two-octave bands. The correlation holds over the primary relaxation frequency. For some materials, this relaxation occurs between 10 and 200 MHz, a typical frequency range for many GPR applications. Frequency-dependent losses caused by scattering and by the commonly overlooked problem of frequency-dependent reflection make it difficult or impossible to measure Q* from reflection data without a priori understanding of the materials. Despite these complications, frequency-dependent attenuation analysis of reflection data can provide valuable subsurface information. At two field sites, I find well-defined frequency-dependent attenuation anomalies associated with nonaqueous-phase liquid contaminants.
引用
收藏
页码:J7 / J16
页数:10
相关论文
共 52 条
[31]   Radar attenuation tomography using the centroid frequency downshift method [J].
Liu, L ;
Lane, JW ;
Quan, YL .
JOURNAL OF APPLIED GEOPHYSICS, 1998, 40 (1-3) :105-116
[32]   GPR attenuation tomography for detecting DNAPLs [J].
Liu, LB ;
Quan, YL .
SYMPOSIUM ON THE APPLICATION OF GEOPHYSICS TO ENGINEERING AND ENVIRONMENTAL PROBLEMS, VOLS 1 & 2, 1997, :241-250
[33]  
MONIERWILLIAMS M, 1995, P S APPL GEOPH ENG E, P1
[34]   WAVE-PROPAGATION AND SAMPLING THEORY .2. SAMPLING THEORY AND COMPLEX WAVES [J].
MORLET, J ;
ARENS, G ;
FOURGEAU, E ;
GIARD, D .
GEOPHYSICS, 1982, 47 (02) :222-236
[35]   WAVE-PROPAGATION AND SAMPLING THEORY .1. COMPLEX SIGNAL AND SCATTERING IN MULTILAYERED MEDIA [J].
MORLET, J ;
ARENS, G ;
FOURGEAU, E ;
GIARD, D .
GEOPHYSICS, 1982, 47 (02) :203-221
[36]  
Olhoeft G.R., 1981, Physical Properties of Rocks and Minerals, V2, P257
[37]  
OLHOEFT GR, 1994, P 5 INT C GROUND PEN, P00145
[38]  
OLHOEFT GR, 1993, 9307 US GEOL SURV OP
[39]   Detection and analysis of LNAPL using the instantaneous amplitude and frequency of ground-penetrating radar data [J].
Orlando, L .
GEOPHYSICAL PROSPECTING, 2002, 50 (01) :27-41
[40]  
Peterson J.E., 2001, J. Environ. Eng. Geophys, V6, P1, DOI [DOI 10.4133/JEEG6.1.1, 10.4133/JEEG6.1.1]