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  • 1
    Call number: 6/M 24.95762
    In: International Association of Geodesy Symposia, 155
    Description / Table of Contents: Intro -- Preface -- Contents -- Part I Gravity Field Modelling and Height Systems -- Remarks on the Terrain Correction and the Geoid Bias -- 1 Introduction -- 2 The Terrain Correction for Masses Located in the Remote Zone of the Bouguer Shell -- 3 The Terrain Correction for Masses Located Outside the Bouguer Plate -- 4 The Terrain Correction Due to Masses in the Near-Zone Inside the Bouguer Plate -- 5 Conclusions -- References -- Why a Height Theory Must Be Rigorous and Physically Correct -- 1 Review -- 2 Problems with Molodensky's Approach -- 3 Arrival of Satellites and the Problem of Height Congruency -- 4 Conclusions -- References -- Geodetic Heights and Holonomity -- 1 Introduction -- 2 What Is a Geodetic Heigh? -- 2.1 A New Definition of a General Geodetic Height HG -- 3 The Four Height Systems Are Geodetic Heights -- 4 Holonomity of the Geodetic Heights -- 5 Comparisons and Conclusions -- References -- Physical Heights of Inland Lakes -- 1 Introduction -- 2 Orthometric Height -- 3 Orthometric Height Variation at Lake Surface -- 4 Quantification: Case Studies -- 4.1 Lake Vänern, Sweden -- 4.2 Lake Michigan, USA -- 4.3 Issyk Kul, Kyrgyzstan -- 4.4 Salar de Uyuni, Bolivia -- 5 Conclusions and Outlook -- Appendix 1: Approximation -- Appendix 2: Normal Height Variation -- References -- The Uncertainties of the Topographical Density Variations in View of a Sub-Centimetre Geoid -- 1 Introduction -- 2 Theory -- 3 Numerical Results -- 4 Conclusion and Remarks -- References -- Estimation of Height Anomalies from Gradients of the Gravitational Potential Using a Spectral Combination Method -- 1 Introduction -- 2 Spectral Combination -- 3 Numerical Experiments -- 4 Conclusion -- References -- Evaluation of the Recent African Gravity Databases V2.x -- 1 Introduction -- 2 Data Used for Establishing the AFRGDB_V2.x Gravity Databases.
    Type of Medium: Monograph available for loan
    Pages: 189 Seiten , Illustrationen
    Edition: 1st ed.
    ISBN: 9783031553592
    Series Statement: International Association of Geodesy Symposia Series 155
    Language: English
    Location: Reading room
    Branch Library: GFZ Library
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  • 2
    Call number: https://doi.org/10.1007/978-3-031-55360-8
    In: International Association of Geodesy Symposia, 155
    Description / Table of Contents: Part I: Gravity Field Modelling and Height Systems -- Remarks on the Terrain Correction and the Geoid Bias -- Why a Height Theory Must Be Rigorous and Physically Correct -- Geodetic Heights and Holonomity -- Physical Heights of Inland Lakes -- The Uncertainties of the Topographical Density Variations in View of a Sub-Centimetre Geoid -- Estimation of Height Anomalies from Gradients of the Gravitational Potential Using a Spectral Combination Method -- Evaluation of the Recent African Gravity Databases V2.x -- Part II : Estimation Theory -- PDF Evaluation of Elliptically Contoured GNSS Integer Ambiguity Residuals -- Spatio-Spectral Assessment of Some Isotropic Polynomial Covariance Functions on the Sphere -- MDBs Versus MIBs in Case of Multiple Hypotheses: A Study in Context of Deformation Analysis -- A Simple TLS-Treatment of the Partial EIV-Model as One with Singular Cofactor Matrices I: The Case of a Kronecker Product for QA = Q0 ⊗ Qx -- Bayesian Robust Multivariate Time Series Analysis in Nonlinear Regression Models with Vector Autoregressive and t-Distributed Errors -- Part III: Geodetic Data Analysis -- An Estimate of the Effect of 3D Heterogeneous Density Distribution on Coseismic Deformation Using a Spectral Finite-Element Approach -- On the Estimation of Time Varying AR Processes -- Refinement of Spatio-Temporal Finite Element Spaces for Mean Sea Surface and Sea Level Anomaly Estimation -- On the Coestimation of Long-Term Spatio-Temporal Signals to Reduce the Aliasing Effect in Parametric Geodetic Mean Dynamic Topography Estimation -- A Flexible Family of Compactly Supported Covariance Functions Based on Cutoff Polynomials -- Modeling of Inhomogeneous Spatio-Temporal Signals by Least Squares Collocation -- A Multi-Epoch Processing Strategy for PPP-RTK Users -- Part IV: Geoid and Quasi-Geoid -- Geoid or Quasi-Geoid? A Short Comparison -- The Quasigeoid: Why Molodensky Heights Fail -- Molodensky’s and Helmert’s Theories: Two Equivalent Geodetic Approaches to the Determination of the Gravity Potential and the Earth Surface. .
    Description / Table of Contents: This open access volume contains the proceedings of the X Hotine-Marussi Symposium on Mathematical Geodesy which was held from 13 to 17 June 2022 at the Politecnico di Milano, Milan, Italy. Since 2006 the series of the Hotine-Marussi Symposia has been under the responsibility of the Inter-Commission Committee on Theory (ICCT) within the International Association of Geodesy (IAG). The ICCT organized the last five Hotine-Marussi Symposia held in Wuhan (2006), Rome (2009, 2013 and 2018), and Milan (2022). The overall goal of the ICCT and Hotine-Marussi Symposia has always been to advance geodetic theory which is indeed documented by the 22 research articles published in these proceedings. The jubilee X Hotine-Marussi Symposium was organized in 10 topical sessions covering all parts of geodetic theory including reference frames, gravity field modelling, adjustment theory, height systems, time series analysis, or advanced numerical methods. In total, 60 participants attended the Symposium who delivered 62 oral and 18 poster presentations. During a special session, five invited speakers discussed two basic concepts of physical geodesy – geoid and quasigeoid.
    Type of Medium: 12
    Pages: 1 Online-Ressource(X, 165 p. 76 illus., 64 illus. in color.)
    Edition: 1st ed. 2024.
    ISBN: 9783031553608
    Series Statement: International Association of Geodesy Symposia 155
    Language: English
    Branch Library: GFZ Library
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  • 3
    Monograph available for loan
    Monograph available for loan
    [Dordrecht [u.a.]] : Springer
    Call number: M 24.95741
    Type of Medium: Monograph available for loan
    Pages: XVIII, 831 Seiten , Illustrationen, Karten , 193 x 260 mm
    Edition: Second edition 2. rev. and enl. ed. of the 1. ed. publ. by Chapman and Hall, 1994
    ISBN: 9789402404470 , 9402404473
    Language: English
    Location: Upper compact magazine
    Branch Library: GFZ Library
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  • 4
    Unknown
    Cambridge : Cambridge University Press
    Description / Table of Contents: Hydrocarbon production, gas recovery from shale, CO2 storage and water management have a common scientific underpinning: multiphase flow in porous media. This book provides a fundamental description of multiphase flow through porous rock, with emphasis on the understanding of displacement processes at the pore, or micron, scale. Fundamental equations and principal concepts using energy, momentum, and mass balance are developed, and the latest developments in high-resolution three-dimensional imaging and associated modelling are explored. The treatment is pedagogical, developing sound physical principles to predict flow and recovery through complex rock structures, while providing a review of the recent literature. This systematic approach makes it an excellent reference for those who are new to the field. Inspired by recent research, and based on courses taught to thousands of students and professionals from around the world, it provides the scientific background necessary for a quantitative assessment of multiphase subsurface flow processes, and is ideal for hydrology and environmental engineering students, as well as professionals in the hydrocarbon, water and carbon storage industries
    Pages: xx, 482 Seiten , Illustrationen, Diagramme
    ISBN: 978-1-107-09346-1
    Language: English
    Branch Library: GFZ Library
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  • 5
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    Cambridge : Cambridge University Press
    Call number: 9781107306189 (e-book)
    Description / Table of Contents: "The Earth is a dynamic system. Internal processes, together with external gravitational forces of the Sun, Moon and planets, displace the Earth's mass, impacting on its shape, rotation and gravitational field. Doug Smylie provides a rigorous overview of the dynamical behaviour of the solid Earth, explaining the theory and presenting methods for numerical implementation. Topics include advanced digital analysis, earthquake displacement fields, Free Core Nutations observed by the Very Long Baseline Interferometric technique, translational modes of the solid inner core observed by the superconducting gravimeters, and dynamics of the outer fluid core. This book is supported by freeware computer code, available online for students to implement the theory. Online materials also include a suite of graphics generated from the numerical analysis, combined with 100 graphic examples in the book to make this an ideal tool for researchers and graduate students in the fields of geodesy, seismology and solid earth geophysics"--
    Type of Medium: 12
    Pages: 1 Online-Ressource (XII, 543 Seiten) , Illustrationen
    Edition: Electronic reproduction. Ann Arbor, MI : ProQuest, 2015. Available via World Wide Web. Access may be limited to ProQuest affiliated libraries.
    ISBN: 9781107306189
    Language: English
    Note: Contents Preface and acknowledgments The book website www.cambridge.org/smylie 1 Introduction and theoretical background 1.1 Scalar, vector and tensor analysis 1.2 Separation of vector fields 1.3 Vector spherical harmonics 1.4 Elasticity theory 1.5 Linear algebraic systems 1.6 Interpolation and approximation 2 Time sequence and spectral analysis 2.1 Time domain analysis 2.2 Linear optimum Wiener filters 2.3 Frequency domain analysis 2.4 Fourier series and transforms 2.5 Power spectral density estimation 2.6 Maximum entropy spectral analysis 3 Earth deformations 3.1 Equilibrium equations 3.2 The reciprocal theorem of Betti 3.3 Radial equations: spheroidal and torsional 3.4 Dynamical equations 3.5 Solutions near the geocentre 3.6 Numerical integration of the radial equations 3.7 Fundamental, regular solutions in the inner core 4 Earth's rotation: observations and theory 4.1 Reference frames 4.2 Polar motion and wobble 4.3 The dynamics of polar motion and wobble 4.4 Nutation and motion of the celestial pole 5 Earth's figure and gravitation 5.1 Historical development 5.2 External gravity and figure 5.3 Equilibrium theory of the internal figure 5.4 Gravity coupling 6 Rotating fluids and the outer core 6.1 The inertial wave equation 6.2 Dynamics of the fluid outer core 6.3 Scaling of the core equations 6.4 Compressibility and density stratification 7 The subseisniic equation and boundary conditions 7.1 The subseismic wave equation 7.2 Deformation of the shell and inner core 8 Variational methods and core modes 8.1 A subseismic variational principle 8.2 Representation of the functional 8.3 Finite element support functions 8.4 Boundary conditions and constraints 8.5 Numerical implementation and results 8.6 Rotational splitting and viscosity 8.7 A viscosity profile for the outer core 9 Static deformations and dislocation theory 9.1 The elasticity theory of dislocations 9.2 The theory for realistic Earth models 9.3 Changes in the inertia tensor and the secular polar shift Appendix A Elementary results from vector analysis A.1 Vector identities A.2 Vector calculus identities A.3 Integral theorems Appendix B Properties of Legendre functions B.1 Recurrence relations B.2 Evaluation of Legendre functions Appendix C Numerical Earth models C.1 The Earth models References Fortran index Subject index
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