Multi-Level Sensing Technologies in Landslide Research-Hrvatska Kostajnica Case Study, Croatia. [PDF]
Podolszki L +3 more
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The Crustal Dynamics and Its Geological Explanation of the Three-Dimensional Co-Seismic Deformation Field for the 2021 Maduo MS7.4 Earthquake Based on GNSS and InSAR. [PDF]
Li X, Chen Y, Wang X, Xiong R.
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DInSAR estimation of ice flow velocity and its verification by GNSS observation [PDF]
第7回極域科学シンポジウム:[OG] 地圏11月29日(火)国立極地研究所 3階 ...
土井 浩一郎 +3 more
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Advanced Multitemporal Phase Unwrapping Techniques for DInSAR Analyses
Differential Synthetic Aperture Radar Interferometry (DInSAR) represents nowadays a wellestablished remote sensing technique to generate spatially dense surface deformation maps of large areas on Earth (Massonnet & Feigl, 1999; Burgmann et. al., 2000). To achieve this task, the phase difference (known as interferogram) between SAR data pairs related to
openaire +5 more sources
Increase in landslide activity after a low-magnitude earthquake as inferred from DInSAR interferometry. [PDF]
Martino S +5 more
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Inter-decadal climate variability induces differential ice response along Pacific-facing West Antarctica. [PDF]
Christie FDW +4 more
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Automatic delineation of glacier grounding lines in differential interferometric synthetic-aperture radar data using deep learning. [PDF]
Mohajerani Y +5 more
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Reaction of the carbonate Sibillini Mountains Basal aquifer (Central Italy) to the extensional 2016-2017 seismic sequence. [PDF]
Cambi C +9 more
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Coseismic Deformation Field and Fault Slip Distribution Inversion of the 2020 Jiashi Ms 6.4 Earthquake: Considering the Atmospheric Effect with Sentinel-1 Data Interferometry. [PDF]
Zhang X, Li J, Liu X, Li Z, Adil N.
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Melt rates in the kilometer-size grounding zone of Petermann Glacier, Greenland, before and during a retreat. [PDF]
Ciracì E +9 more
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