Searched for: subject%3A%22Ground%255C-penetrating%255C%252Bradar%255C%252B%255C%2528gpr%255C%2529%22
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Hunziker, J. (author), Slob, E.C. (author), Irving, J. (author)
Modeling ground penetrating radar (GPR) reflection data on glaciers with methods that require the discretization of the full subsurface domain is extremely computationally expensive because of the combination of a large domain size and the comparatively short wavelength of the signal. To address this issue, we build on and extend a previously...
journal article 2023
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Zhou, F. (author), Miorali, M. (author), Slob, E.C. (author), Hu, Xiangyun (author)
The recently developed smart well technology allows for sectionalized production control by means of downhole inflow control valves and monitoring devices. We consider borehole radars as permanently installed downhole sensors to monitor fluid evolution in reservoirs, and it provides the possibility to support a proactive control for smart...
journal article 2018
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Wang, J. (author), Aubry, P.J. (author), Yarovoy, Alexander (author)
Ground penetrating radar imaging from the data acquired with arbitrarily oriented dipole-like antennas is considered. To take into account variations of antenna orientations resulting in spatial rotation of antenna radiation patterns and polarizations of transmitted fields, the full-wave method that accounts for the near-, intermediate-, and...
journal article 2018
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Slob, E.C. (author)
Interferometric techniques are now well known to retrieve data between two receivers by the cross correlation of the data recorded by these receivers. Cross-correlation methods for interferometry rely mostly on the assumption that the medium is loss free and that the sources are all around the receivers. A recently developed method introduced...
journal article 2009
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Savelyev, T.G. (author), Yarovoy, A.G. (author), Ligthart, L.P. (author)
This paper presents a 3-D imaging technique for an ultra-wideband (UWB) ground penetrating radar (GPR) with a single transmit antenna and a linear receive array. The video impulse GPR working in the frequency band of 0.3–3 GHz has been designed in IRCTR for landmine detection, i.e., for a near-field application. Installed on a vehicle it can...
journal article 2008
Searched for: subject%3A%22Ground%255C-penetrating%255C%252Bradar%255C%252B%255C%2528gpr%255C%2529%22
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