Analyses of GPR signals for characterization of ground conditions in urban areas

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64
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72

초록

Ground penetrating radar (GPR) is applied for the characterization of the ground conditions in urban areas. In addition, time domain reflectometry (TDR) and dynamic cone penetrometer (DCP) tests are conducted for the accurate analyses of the GPR images. The GPR images are acquired near a ground excavation site, where a ground subsidence occurred and was repaired. Moreover, the relative permittivity and dynamic cone penetration index (DCPI) are profiled through the TDR and DCP tests, respectively. As the ground in the urban area is kept under a low-moisture condition, the relative permittivity, which is inversely related to the electromagnetic impedance, is mainly affected by the dry density and is inversely proportional to the DCPI value. Because the first strong signal in the GPR image is shifted 180 degrees from the emitted signal, the polarity of the electromagnetic wave reflected at the dense layer, where the reflection coefficient is negative, is identical to that of the first strong signal. The temporal-scaled GPR images can be accurately converted into the spatial-scaled GPR images using the relative permittivity determined by the TDR test. The distribution of the loose layer can be accurately estimated by using the spatial-scaled GPR images and reflection characteristics of the electromagnetic wave. Note that the loose layer distribution estimated in this study matches well with the DCPI profile and is visually verified from the endoscopic images. This study demonstrates that the GPR survey complemented by the TDR and DCP tests, may be an effective method for the characterization of ground conditions in an urban area. (C) 2017 Elsevier B.V. All rights reserved.

키워드

Electromagnetic impedanceGround penetrating radarReflection coefficientRelative permittivitySubsidenceDYNAMIC CONE PENETROMETER
제목
Analyses of GPR signals for characterization of ground conditions in urban areas
저자
Hong, Won-TaekKang, SeonghunLee, Sung JinLee, Jong-Sub
DOI
10.1016/j.jappgeo.2018.03.005
발행일
2018-05
유형
Article
저널명
Journal of Applied Geophysics
152
페이지
65 ~ 76