157 resultados para video images


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Etudiant les images viatiques des Alpes présentes dans la base de données VIATIMAGES, au tournant des XVIIIe-XIXe siècles, l'article montre que la prépondérance du sens de la vue dans la perception des paysages est une construction historique et anthropologique. En analysant plus précisément ces images, on peut y repérer des personnages identifiés aux habitants des lieux visités par les voyageurs. Au-delà des stéréotypes du "berger des Alpes", ces images nous disent quelque chose sur la perception pluri-sensorielle et sur l'immédiateté de la présence au monde des paysans alpins. Cependant, une équivoque demeure, que les sources viatiques ne permettent pas de lever, car les qualités attribuées aux paysans des Alpes sont celles mêmes dont les élites urbaines voyageantes sont privées. Dans les zones de contact que sont les sites touristiques au début du XIXe siècle, le regardant et le regardé mettent en miroir leurs qualités sans les partager.

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Geophysical tomography captures the spatial distribution of the underlying geophysical property at a relatively high resolution, but the tomographic images tend to be blurred representations of reality and generally fail to reproduce sharp interfaces. Such models may cause significant bias when taken as a basis for predictive flow and transport modeling and are unsuitable for uncertainty assessment. We present a methodology in which tomograms are used to condition multiple-point statistics (MPS) simulations. A large set of geologically reasonable facies realizations and their corresponding synthetically calculated cross-hole radar tomograms are used as a training image. The training image is scanned with a direct sampling algorithm for patterns in the conditioning tomogram, while accounting for the spatially varying resolution of the tomograms. In a post-processing step, only those conditional simulations that predicted the radar traveltimes within the expected data error levels are accepted. The methodology is demonstrated on a two-facies example featuring channels and an aquifer analog of alluvial sedimentary structures with five facies. For both cases, MPS simulations exhibit the sharp interfaces and the geological patterns found in the training image. Compared to unconditioned MPS simulations, the uncertainty in transport predictions is markedly decreased for simulations conditioned to tomograms. As an improvement to other approaches relying on classical smoothness-constrained geophysical tomography, the proposed method allows for: (1) reproduction of sharp interfaces, (2) incorporation of realistic geological constraints and (3) generation of multiple realizations that enables uncertainty assessment.

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