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        <BiographicalNote language="fre">&lt;p&gt;Jean-Luc Mari est un géophysicien qui a mené une brillante carrière en géosciences appliquées. Diplômé de l’Institut de Physique du Globe de Strasbourg et de l’IFP School (Géosciences Pétrolières, spécialisation Géophysique, 1978), il a rejoint IFP Energies Nouvelles en 1979 en tant qu’ingénieur de recherche au sein du département de Géophysique. Il a dirigé et participé à des projets de recherche majeurs en imagerie sismique haute résolution, en surveillance des réservoirs et en développement d’outils de forage, en collaboration avec des partenaires industriels tels que GDF-Suez, CGG, Total et ELF Aquitaine.&lt;/p&gt;</BiographicalNote>
        <BiographicalNote language="eng">&lt;p&gt;Jean-Luc Mari is a geophysicist with a distinguished career in applied geosciences. A graduate of the Institut de Physique du Globe de Strasbourg and IFP School (Petroleum Geosciences, major in Geophysics, 1978), he joined IFP Energies Nouvelles in 1979 as a research engineer in the Geophysics Department. He led and contributed to key research projects in high-resolution seismic imaging, reservoir monitoring, and borehole tool development, in collaboration with industrial partners such as GDF-Suez, CGG, Total, and ELF Aquitaine.&lt;/p&gt;</BiographicalNote>
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        <Text>&lt;p&gt;Approaches that are typically applied in deep exploration geophysics, combining different seismic and logging methods, can be technically adapted for certain geotechnical or hydrogeological surveys or some site characterizations in the framework of seismic hazard studies. Currently it is entirely feasible to implement this type of geophysical surveying if the situation requires.&lt;br /&gt;After reviewing the current state of knowledge regarding borehole measurements of subsurface shear velocities applied to the geotechnical field, this book illustrates the feasibility of carrying out vertical seismic profiles (VSPs) and logs in this field. &lt;br /&gt;This approach also illustrates the value of combining velocity measurements of formations provided by borehole seismic tools (VSP) and acoustic (sonic) tools.&lt;br /&gt;An innovative example of the application of borehole seismic and logging methods is then presented in the case study of a relatively near-surface (from 20 to 130 m) karst carbonate aquifer. It shows how a multi-scale description of the reservoir can be carried out by integrating the information provided by different 3D-THR surface seismic methods, full waveform acoustic logging, VSP with hydrophones, borehole optical televiewer and flow measurements.&lt;br /&gt;In this book the authors provide readers with guidelines to carry out these operations, in terms of acquisitions as well as processing and interpretation. Thus, users will be able to draw inspiration to continue transferring petroleum techniques and other innovative methods for use in near-surface studies.&lt;/p&gt;</Text>
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        <Text>Approaches that are typically applied in deep exploration geophysics, combining different seismic and logging methods, can be technically adapted for certain geotechnical or hydrogeological surveys or some site characterizations in the framework of seismic hazard studies.</Text>
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