Assessment of the dielectric anisotropy in timber using the nondestructive GPR technique
In the realm of architecture ground-penetrating radar has been used as nondestructive technique to assess physical properties of wood structures in situ. However, a better understanding of the dielectric anisotropy of timber is needed to develop this application. An experiment was conducted on samples of sawn timber of different species (densities) to study their dielectric responses according to the grain directions using a GPR with a 1.6 GHz antenna. Interesting differences were found the propagation velocities, as well as the amplitudes of the direct and reflected waves always presented lesser when the electric field was longitudinal to the grain than when transverse. But when the field was propagated in whatever transverse direction some of those parameters not differ greatly. © 2012 Elsevier Ltd. All rights reserved.
Main Authors: | Martínez-Sala, R., Rodríguez-Abad, I., Diez Barra, R., Capuz-Lladró, R. |
---|---|
Format: | journal article biblioteca |
Language: | English |
Published: |
Elsevier
2013
|
Subjects: | Ground-penetrating radar, Timber, Dielectric properties, Anisotropy, Wave parameters, |
Online Access: | http://hdl.handle.net/20.500.12792/2773 http://hdl.handle.net/10261/293886 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
Similar Items
-
ICE Thickness Using Ground Penetrating Radar at Znosko Glacier on King George Island
by: Bello, C., et al. -
Seismic reflection processing with special reference to anisotropy Libro electrónico
by: Upadhyay, S. K. autor/a
Published: (c200) -
Simulation of Radar Spectrometer Based on Signal Flow and Correction of Ocean Anisotropy
by: Bao, Qing-liu, et al.
Published: (2014) -
An approach to estimate tidal dissipation with single-point high-frequency ground wave radar data <OT>=单点高频地波雷达资料估算潮能耗散的方法.
by: Mao, Huabin, et al.
Published: (2012) -
An investigation into the use of relative permittivity for evaluation and monitoring of expansive clay subgrades
by: Cooper, Marc