Arid
DOI10.1016/j.jappgeo.2009.11.005
Geoelectrical constraints on radar probing of shallow water-saturated zones within karstified carbonates in semi-arid environments
Mukherjee, Damayanti1; Heggy, Essam2; Khan, Shuhab D.1
通讯作者Mukherjee, Damayanti
来源期刊JOURNAL OF APPLIED GEOPHYSICS
ISSN0926-9851
出版年2010
卷号70期号:3页码:181-191
英文摘要

Shallow carbonates are of utmost importance as potential sources of groundwater in karstified semi-arid terrains. Ground-Penetrating Radar (GPR) is being increasingly used as a prominent mapping tool in such environments. However, its potential in exploring and identifying shallow water-saturated zones (WSZs) in carbonates is constrained by the geoelectrical properties of carbonate soils as a function of moisture content. We report results of a case study that includes laboratory geoelectrical characterization and their comparison to in situ GPR attenuation measurements performed on Cretaceous Edwards Formation rudist mounds in central Texas, which we hypothesize as analogs for water-bearing formations in semi-arid karstified carbonate terrains. Dielectric measurements on field-collected rock samples carried out in the laboratory under controlled conditions of moisture saturation suggest that real and imaginary parts of dielectric constants of rocks with higher porosity and/or permeability have steeper dependence on pore moisture content; they produce better dielectric contrasts but allow shallower penetration. Our analyses suggest that within carbonates, dielectric contrasts improve with decrease in sounding frequency and/or increase in moisture content; and the relationship between dielectric permittivity and moisture content may be represented by 3rd order polynomial equations. GPR surveys using a wide-band 400 MHz antenna reveal subsurface mound morphologies with heights of similar to 1-2 m and basal diameters of similar to 8-10 m resembling outcrop analogs. Each mound appears to be composed of smaller amalgamated lithounits that seem geoelectrically similar. Amplitudes decays of the backscattered radar signal correlate to moisture distribution. Measuring the differences in signal attenuation allows differentiation between saturated and non-saturated zones. Velocity analyses of GPR profiles enable estimation of moisture distribution in the vicinity of the mounds. Optimal delineation and production of high-resolution GPR data up to a depth of similar to 10 m were observed for a sounding frequency of similar to 250 MHz with moisture content of similar to 5% by weight. Below this moisture level, the dielectric contrast is insufficient to uniquely identify water-saturated zones from the surrounding geoelectrical context, and above it, the radar signal is substantially attenuated leading to a total inefficiency of the method. (C) 2009 Elsevier B.V. All rights reserved.


英文关键词Dielectric permittivity Moisture GPR Porosity Carbonate
类型Article
语种英语
国家USA ; France
收录类别SCI-E
WOS记录号WOS:000276417700001
WOS关键词GROUND-PENETRATING RADAR ; TIME-DOMAIN REFLECTOMETRY ; DIELECTRIC-PROPERTIES ; MARTIAN SUBSURFACE ; MOISTURE ; SOIL ; FREQUENCIES ; MODELS ; ROCKS
WOS类目Geosciences, Multidisciplinary ; Mining & Mineral Processing
WOS研究方向Geology ; Mining & Mineral Processing
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/164820
作者单位1.Univ Houston, Dept Earth & Atmospher Sci, Houston, TX 77204 USA;
2.Inst Phys Globe Paris, F-94100 St Maur Des Fosses, France
推荐引用方式
GB/T 7714
Mukherjee, Damayanti,Heggy, Essam,Khan, Shuhab D.. Geoelectrical constraints on radar probing of shallow water-saturated zones within karstified carbonates in semi-arid environments[J],2010,70(3):181-191.
APA Mukherjee, Damayanti,Heggy, Essam,&Khan, Shuhab D..(2010).Geoelectrical constraints on radar probing of shallow water-saturated zones within karstified carbonates in semi-arid environments.JOURNAL OF APPLIED GEOPHYSICS,70(3),181-191.
MLA Mukherjee, Damayanti,et al."Geoelectrical constraints on radar probing of shallow water-saturated zones within karstified carbonates in semi-arid environments".JOURNAL OF APPLIED GEOPHYSICS 70.3(2010):181-191.
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