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  • thema EDItEUR::P Mathematics and Science::PH Physics  (31)
  • Humans
  • LUNAR AND PLANETARY EXPLORATION
  • Lunar and Planetary Science and Exploration
  • Mice
  • 2020-2024  (32)
  • 1
    Publication Date: 2024-04-04
    Description: Des démarches classiquement appliquées en géophysiques d’exploration profonde, combinant différentes méthodes sismiques et diagraphiques, peuvent techniquement se décliner pour certaines reconnaissances géotechniques, hydrogéologiques ou des caractérisations de site dans le cadre d’études d’aléa sismique. Aujourd’hui la mise en œuvre de ce type de reconnaissances géophysiques est tout à fait réaliste, si les enjeux le nécessitent. Après un état de l’art concernant les mesures en forage des vitesses de cisaillement du sous-sol, appliquées au domaine géotechnique, cet ouvrage illustre la faisabilité de réaliser pour ce même domaine des profils sismiques verticaux (PSV) et des diagraphies. Cette démarche, illustre également l’intérêt de la combinaison des mesures de vitesse des formations fournies par les outils de sismique en forage (PSV) et les outils acoustiques (soniques). Un exemple innovant d’application des méthodes sismiques en forage et des diagraphies est présenté ensuite par l’étude d’un aquifère calcaire karstifié, relativement proche de la surface (de 20 à 130 m). On y montre comment une description multi échelle du réservoir peut être réalisée en intégrants les informations fournies par différentes méthodes sismiques de surface 3D-THR, diagraphies acoustiques en champs total, PSV avec hydrophones, imageries de paroi et mesures de débitmétrie. Dans cet ouvrage, les auteurs donnent également aux lecteurs des clefs pour mener à bien ces opérations, aussi bien vis-à-vis de leurs acquisitions, que de leurs traitements et interprétations. Ainsi, les utilisateurs pourront puiser l’inspiration de poursuivre la transposition de techniques pétrolières ou innovantes pour les études de la proche surface.
    Keywords: geophysics ; hydrogeology ; bic Book Industry Communication::P Mathematics & science::PH Physics ; thema EDItEUR::P Mathematics and Science::PH Physics
    Language: French
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  • 2
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    Unknown
    EDP SCIENCES
    Publication Date: 2024-04-04
    Description: In the geophysics of oil exploration and reservoir studies, the surface seismic method is the most commonly used method to obtain a subsurface model in 2 or 3 dimensions. This method plays an increasingly important role in soil investigations for geotechnical, hydrogeological and site characterization studies regarding seismic hazard issues. The goal of this book is to provide a practical guide, using examples from the field, to the application of seismic methods to surface imaging. After reviewing the current state of knowledge in seismic wave propagation, refraction and reflection seismic methods, the book aims to describe how seismic tomography and fullwave form inversion methods can be used to obtain seismic images of the subsurface. Through various synthetic and field examples, the book highlights the benefit of combining different sets of data: refracted waves with reflected waves, and body waves with surface waves. With field data targeting shallow structures, it shows how more accurate geophysical models can be obtained by using the proposed hybrid methods. Finally, it shows how the integration of seismic data (3D survey and VSP), logging data (acoustic logging) and core measurements, combined with a succession of specific and advanced processing techniques, enables the development of a 3D high resolution geological model in depth. In addition to these examples, the authors provide readers with guidelines to carry out these operations, in terms of acquisition, as well as processing and interpretation. In each chapter, the reader will find theoretical concepts, practical rules and, above all, actual application examples. For this reason, the book can be used as a text to accompany course lectures or continuing education seminars. This book aims to promote the exchange of information among geologists, geophysicists, and engineers in geotechnical fields.
    Keywords: geophysics ; hydrogeology ; bic Book Industry Communication::P Mathematics & science::PH Physics ; thema EDItEUR::P Mathematics and Science::PH Physics
    Language: English
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  • 3
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    Unknown
    EDP SCIENCES
    Publication Date: 2024-04-04
    Description: Des démarches classiquement appliquées en géophysiques d’exploration profonde, combinant différentes méthodes sismiques et diagraphiques, peuvent techniquement se décliner pour certaines reconnaissances géotechniques, hydrogéologiques ou des caractérisations de site dans le cadre d’études d’aléa sismique. Aujourd’hui la mise en œuvre de ce type de reconnaissances géophysiques est tout à fait réaliste, si les enjeux le nécessitent. Après un état de l’art concernant les mesures en forage des vitesses de cisaillement du sous-sol, appliquées au domaine géotechnique, cet ouvrage illustre la faisabilité de réaliser pour ce même domaine des profils sismiques verticaux (PSV) et des diagraphies. Cette démarche, illustre également l’intérêt de la combinaison des mesures de vitesse des formations fournies par les outils de sismique en forage (PSV) et les outils acoustiques (soniques). Un exemple innovant d’application des méthodes sismiques en forage et des diagraphies est présenté ensuite par l’étude d’un aquifère calcaire karstifié, relativement proche de la surface (de 20 à 130 m). On y montre comment une description multi échelle du réservoir peut être réalisée en intégrants les informations fournies par différentes méthodes sismiques de surface 3D-THR, diagraphies acoustiques en champs total, PSV avec hydrophones, imageries de paroi et mesures de débitmétrie. Dans cet ouvrage, les auteurs donnent également aux lecteurs des clefs pour mener à bien ces opérations, aussi bien vis-à-vis de leurs acquisitions, que de leurs traitements et interprétations. Ainsi, les utilisateurs pourront puiser l’inspiration de poursuivre la transposition de techniques pétrolières ou innovantes pour les études de la proche surface.
    Keywords: geophysics ; hydrogeology ; bic Book Industry Communication::P Mathematics & science::PH Physics ; thema EDItEUR::P Mathematics and Science::PH Physics
    Language: French
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  • 4
    Publication Date: 2024-04-04
    Description: In the geophysics of oil exploration and reservoir studies, the surface seismic method is the most commonly used method to obtain a subsurface model in 2 or 3 dimensions. This method plays an increasingly important role in soil investigations for geotechnical, hydrogeological and site characterization studies regarding seismic hazard issues. The goal of this book is to provide a practical guide, using examples from the field, to the application of seismic methods to surface imaging. After reviewing the current state of knowledge in seismic wave propagation, refraction and reflection seismic methods, the book aims to describe how seismic tomography and fullwave form inversion methods can be used to obtain seismic images of the subsurface. Through various synthetic and field examples, the book highlights the benefit of combining different sets of data: refracted waves with reflected waves, and body waves with surface waves. With field data targeting shallow structures, it shows how more accurate geophysical models can be obtained by using the proposed hybrid methods. Finally, it shows how the integration of seismic data (3D survey and VSP), logging data (acoustic logging) and core measurements, combined with a succession of specific and advanced processing techniques, enables the development of a 3D high resolution geological model in depth. In addition to these examples, the authors provide readers with guidelines to carry out these operations, in terms of acquisition, as well as processing and interpretation. In each chapter, the reader will find theoretical concepts, practical rules and, above all, actual application examples. For this reason, the book can be used as a text to accompany course lectures or continuing education seminars. This book aims to promote the exchange of information among geologists, geophysicists, and engineers in geotechnical fields.
    Keywords: geophysics ; hydrogeology ; bic Book Industry Communication::P Mathematics & science::PH Physics ; thema EDItEUR::P Mathematics and Science::PH Physics
    Language: English
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  • 5
    Publication Date: 2024-04-04
    Description: This book is a collection of 19 articles which reflect the courses given at the Collège de France/Summer school “Reconstruction d'images − Applications astrophysiques“ held in Nice and Fréjus, France, from June 18 to 22, 2012. The articles presented in this volume address emerging concepts and methods that are useful in the complex process of improving our knowledge of the celestial objects, including Earth.
    Keywords: image reconstruction ; astrophysical applications ; bic Book Industry Communication::P Mathematics & science::PH Physics ; thema EDItEUR::P Mathematics and Science::PH Physics
    Language: English
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  • 6
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    Unknown
    EDP SCIENCES
    Publication Date: 2024-04-04
    Description: In the geophysics of oil exploration and reservoir studies, the surface seismic method is the most commonly used method to obtain a subsurface model in 2 or 3 dimensions. This method plays an increasingly important role in soil investigations for geotechnical, hydrogeological and site characterization studies regarding seismic hazard issues. The goal of this book is to provide a practical guide, using examples from the field, to the application of seismic methods to surface imaging. After reviewing the current state of knowledge in seismic wave propagation, refraction and reflection seismic methods, the book aims to describe how seismic tomography and fullwave form inversion methods can be used to obtain seismic images of the subsurface. Through various synthetic and field examples, the book highlights the benefit of combining different sets of data: refracted waves with reflected waves, and body waves with surface waves. With field data targeting shallow structures, it shows how more accurate geophysical models can be obtained by using the proposed hybrid methods. Finally, it shows how the integration of seismic data (3D survey and VSP), logging data (acoustic logging) and core measurements, combined with a succession of specific and advanced processing techniques, enables the development of a 3D high resolution geological model in depth. In addition to these examples, the authors provide readers with guidelines to carry out these operations, in terms of acquisition, as well as processing and interpretation. In each chapter, the reader will find theoretical concepts, practical rules and, above all, actual application examples. For this reason, the book can be used as a text to accompany course lectures or continuing education seminars. This book aims to promote the exchange of information among geologists, geophysicists, and engineers in geotechnical fields.
    Keywords: geophysics ; hydrogeology ; bic Book Industry Communication::P Mathematics & science::PH Physics ; thema EDItEUR::P Mathematics and Science::PH Physics
    Language: English
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  • 7
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    Unknown
    Frontiers Media SA
    Publication Date: 2024-03-31
    Description: Echolocation has evolved in different groups of animals, from bats and cetaceans to birds and humans, and enables localization and tracking of objects in a dynamic environment, where light levels may be very low or absent. Nature has shaped echolocation, an active sense that engages audiomotor feedback systems, which operates in diverse environments and situations. Echolocation production and perception vary across species, and signals are often adapted to the environment and task. In the last several decades, researchers have been studying the echolocation behavior of animals, both in the air and underwater, using different methodologies and perspectives. The result of these studies has led to rich knowledge on sound production mechanisms, directionality of the sound beam, signal design, echo reception and perception. Active control over echolocation signal production and the mechanisms for echo processing ultimately provide animals with an echoic scene or image of their surroundings. Sonar signal features directly influence the information available for the echolocating animal to perceive images of its environment. In many echolocating animals, the information processed through echoes elicits a reaction in motor systems, including adjustments in subsequent echolocation signals. We are interested in understanding how echolocating animals deal with different environments (e.g. clutter, light levels), tasks, distance to targets or objects, different prey types or other food sources, presence of conspecifics or certain predators, ambient and anthropogenic noise. In recent years, some researchers have presented new data on the origins of echolocation, which can provide a hint of its evolution. Theoreticians have addressed several issues that bear on echolocation systems, such as frequency or time resolution, target localization and beam-forming mechanisms. In this Research Topic we compiled recent work that elucidates how echolocation – from sound production, through echolocation signals to perception- has been shaped by nature functioning in different environments and situations. We strongly encouraged comparative approaches that would deepen our understanding of the processes comprising this active sense.
    Keywords: QP1-981 ; Q1-390 ; bats ; Biosonar ; Humans ; marine mammals ; sensory biology ; Birds ; Behavior ; Communication ; thema EDItEUR::M Medicine and Nursing::MF Pre-clinical medicine: basic sciences::MFG Physiology
    Language: English
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  • 8
    Publication Date: 2024-04-04
    Description: This book is dedicated to all the people interested in the CoRoT mission and the beautiful data that were delivered during its six year duration. Either amateurs, professional, young or senior researchers, they will find treasures not only at the time of this publication but also in the future twenty or thirty years. It presents the data in their final version, explains how they have been obtained, how to handle them, describes the tools necessary to understand them, and where to find them. It also highlights the most striking first results obtained up to now. CoRoT has opened several unexpected directions of research and certainly new ones still to be discovered.
    Keywords: photometry ; space mission ; thema EDItEUR::P Mathematics and Science::PH Physics
    Language: English
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  • 9
    facet.materialart.
    Unknown
    EDP SCIENCES
    Publication Date: 2024-04-04
    Description: In the geophysics of oil exploration and reservoir studies, the surface seismic method is the most commonly used method to obtain a subsurface model in 2 or 3 dimensions. This method plays an increasingly important role in soil investigations for geotechnical, hydrogeological and site characterization studies regarding seismic hazard issues. The goal of this book is to provide a practical guide, using examples from the field, to the application of seismic methods to surface imaging. After reviewing the current state of knowledge in seismic wave propagation, refraction and reflection seismic methods, the book aims to describe how seismic tomography and fullwave form inversion methods can be used to obtain seismic images of the subsurface. Through various synthetic and field examples, the book highlights the benefit of combining different sets of data: refracted waves with reflected waves, and body waves with surface waves. With field data targeting shallow structures, it shows how more accurate geophysical models can be obtained by using the proposed hybrid methods. Finally, it shows how the integration of seismic data (3D survey and VSP), logging data (acoustic logging) and core measurements, combined with a succession of specific and advanced processing techniques, enables the development of a 3D high resolution geological model in depth. In addition to these examples, the authors provide readers with guidelines to carry out these operations, in terms of acquisition, as well as processing and interpretation. In each chapter, the reader will find theoretical concepts, practical rules and, above all, actual application examples. For this reason, the book can be used as a text to accompany course lectures or continuing education seminars. This book aims to promote the exchange of information among geologists, geophysicists, and engineers in geotechnical fields.
    Keywords: geophysics ; hydrogeology ; thema EDItEUR::P Mathematics and Science::PH Physics
    Language: English
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  • 10
    facet.materialart.
    Unknown
    EDP SCIENCES
    Publication Date: 2024-04-04
    Description: In the geophysics of oil exploration and reservoir studies, the surface seismic method is the most commonly used method to obtain a subsurface model in 2 or 3 dimensions. This method plays an increasingly important role in soil investigations for geotechnical, hydrogeological and site characterization studies regarding seismic hazard issues. The goal of this book is to provide a practical guide, using examples from the field, to the application of seismic methods to surface imaging. After reviewing the current state of knowledge in seismic wave propagation, refraction and reflection seismic methods, the book aims to describe how seismic tomography and fullwave form inversion methods can be used to obtain seismic images of the subsurface. Through various synthetic and field examples, the book highlights the benefit of combining different sets of data: refracted waves with reflected waves, and body waves with surface waves. With field data targeting shallow structures, it shows how more accurate geophysical models can be obtained by using the proposed hybrid methods. Finally, it shows how the integration of seismic data (3D survey and VSP), logging data (acoustic logging) and core measurements, combined with a succession of specific and advanced processing techniques, enables the development of a 3D high resolution geological model in depth. In addition to these examples, the authors provide readers with guidelines to carry out these operations, in terms of acquisition, as well as processing and interpretation. In each chapter, the reader will find theoretical concepts, practical rules and, above all, actual application examples. For this reason, the book can be used as a text to accompany course lectures or continuing education seminars. This book aims to promote the exchange of information among geologists, geophysicists, and engineers in geotechnical fields.
    Keywords: geophysics ; hydrogeology ; thema EDItEUR::P Mathematics and Science::PH Physics
    Language: English
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