All Stories

  1. Density Model Creation Based on Separating Gravity Field by Depth
  2. On analytical continuation of harmonic function
  3. Model of the structure of the Earth’s crust and Upper Mantle along the Middle Ural transect (Based on the results of Volumetric seismic Density Modeling)
  4. 3D Seismic Density Models of the Earth’s Crust and Structural Diagrams of Tectonic Zoning of the Middle Urals
  5. Deep Structure of the Middle Urals According to Magnetic and Gravitational Data
  6. On the Crustal Sources of Magnetic Anomalies in the Middle Urals
  7. Now possible to interpret observed gravity data without calculating corrections for the topography
  8. An Algorithm for Solving the Problem of Phase Unwrapping in Remote Sensing Radars and Its Implementation on Multicore Processors
  9. Structural Tectonic Scheme Creation Based on Seismic-Gravity Models and Isostasy Usage: Ural Case
  10. On approximation gravity data by the singular functions
  11. Joint Interpretation Results of Gravitational and Thermal Fields for the Ural Region
  12. Lithosphere Density Model of the Middle Urals Segment
  13. Choosing a Regularization Parameter in the Problem of Analytical Continuation of Gravitational Fields (Separation of Anomalies Generated by Shallow and Deep Sources)
  14. Numerical algorithm of gravity inverse problem solving for layered medium
  15. Results of Modeling Sources of Magnetic Anomalies in the Earth’s Crust in the Middle Urals
  16. Integral Formula for Solving the Thermal Conjugation Problem for Layered Media: the Structure of the Integral Operator
  17. Velocity and Density Cross Sections of the Upper Part of the Lithosphere within the North Urals Segment
  18. Computationally Effective Gravity Inversion Allows for High-Resolution Regional Density Modeling of Earth's Crust with the Inclusion of the Topography Layer
  19. Computationally Effective Modeling of Self-Demagnetization and Magnetic Field for Bodies of Arbitrary Shape Using Polyhedron Discretization
  20. Stable numerical algorithm for gravity data inversion using a priori information
  21. Preface of “The Third Symposium on Advanced Methods and Information Technologies Applications (AMITA)”
  22. Computer Technology for Modeling the Sources of Magnetic Anomalies in the Layers of the Earth’s Crust
  23. Parallel Algorithms for Solving Inverse Gravimetry Problems: Application for Earth’s Crust Density Models Creation
  24. Numerical algorithms for structural magnetometry inverse problem solving
  25. Construction of Density Models of Layered Media Using Algorithms for Separating The Sources of The Gravitational Field by Depth
  26. Computer technology for separating lithospheric magnetic anomalies
  27. Interpretation of Gravity Data Measured by Topography
  28. A Method for Quantitative Interpretation of Stationary Thermal Fields for Layered Media
  29. On a solution of forward and inverse problems of potential geophysical fields
  30. Numerical solution of the forward magnetic field problem for models with irregular polyhedron discretization taking into account the "demagnetization effect"
  31. Preface of “The Second Symposium on Advanced Methods and Information Technologies Applications (AMITA)”
  32. A Method for Density Models Construction Using Gravity, Seismic Data and Lithostatic Pressure Distribution
  33. Cost‐efficient numerical algorithm for solving the linear inverse problem of finding a variable magnetization
  34. Conjugacy Problem for Stationary Heat Fields
  35. Forward-modeling gravitational fields in curvilinear and Cartesian rectangular coordinates
  36. On solution of 3D inverse problems of magnetic explorations
  37. Preface of “The First Symposium on Advanced Methods and Information Technologies Applications (AMITA)”
  38. Numerical method for geological objects separating by depth using gravity and magnetic data
  39. On solutions of forward and inverse problem for potential geophysical fields: Gravity inversion for Urals region
  40. On Numerical Solution of Forward Gravity Problem for Ellipsoidal Models
  41. Results of Stationary Thermal Fields modeling for Urals region
  42. Gravity Data Inversion with Method of Local Corrections for Finite Elements Models
  43. On Solving the Forward Problem of Gravimetry in Curvilinear and Cartesian Coordinates: Krasovskii’s Ellipsoid and Plane Modeling
  44. MAGNETIC ANOMALIES INTERPRETATION AND EARTH'S CRUST MAGNETIZATION MODEL OF THE NETHER-POLAR AND POLAR URALS
  45. RESOURCE-SAVING COMPUTER TECHNOLOGY FOR OIL AND GAS EXPLORATION
  46. Accounting for the influence of the Earth’s sphericity in three-dimensional density modelling
  47. A new regional tectonic map of the consolidated crystalline basement of sedimentary basins and near-surface fold structures of the Ural region
  48. ALGORITHM FOR SOLUTION 3D DIRECT AND INVERSE PROBLEM OF MAGNETIC PROSPECTING
  49. DENSITY BLOCK MODELS CREATION BASED ON ISOSTASY USAGE
  50. Results of the Arctic Urals magnetic data interpretation
  51. The mathematic methods of short-term earthquake prediction
  52. Forward gravity problem solution optimization for the finite elements approach
  53. On finding a density in a curvilinear layer by biconjugate gradient type methods
  54. On selecting the excess density in gravity modeling of inhomogeneous media
  55. On solving the inverse structural magnetic problem for large grids on GPUs
  56. On stable solution of 3D gravity inverse problem
  57. On three dimensional magnetic inverse problems solution for stellar bodies
  58. Stable methods of interpretation of gravimetric data
  59. An Efficient Numerical Technique for Solving the Inverse Gravity Problem of Finding a Lateral Density
  60. Solving the structural inverse gravity problem by the modified gradient methods
  61. Manifestation of plastic deformation waves in the rocks structural changes
  62. The interpretation of spatial and temporal distribution of radon high-amplitude variations based on Goldin’s model
  63. An efficient algorithm for solving the gravity problem of finding a density in a horizontal layer
  64. Magnetic Clusters in Natural Ferro-Chromian Spinels
  65. Tectonodynamic model of the Earth’s crust of the Urals and neighboring areas
  66. 3d Density Model Construction For Timan-Pechora Region
  67. Computer technology for highlighting the magnetic anomalies from the deep layers of the Earth's crust
  68. The investigation of optimal regularization parameter for potential field transformation
  69. The new technique of solving the inverse magnetic problem for Denezhkin Kamen dunite-gabbro massif
  70. The nature of geomagnetic anomalies in metamorphosed chromite-bearing dunites: a case study of the southern Klyuchevskoy complex, Central Urals
  71. A fast parallel gradient algorithm for solving structural inverse gravity problem
  72. Studying the structural features of the lithospheric magnetic and gravity fields with the use of parallel algorithms
  73. Magnetic microphases in chrome-spinels from alpine-type ultramafic rocks, Central Urals
  74. Manifestation of the earth’s free oscillations in the spectra of seismic acoustic emission in the Ural superdeep borehole
  75. Оптимизация и распараллеливание методов типа Ньютона для решения структурных обратных задач гравиметрии и магнитометрии
  76. Solving the structural inverse problem of magnetic prospecting with respect to demagnetization for a two-layer medium model
  77. Algorithms for solving the structural gravity problem in a multilayer medium
  78. Regional structural features of Lower Riphean sections in connection with the problem of petroleum resource potential of deeply buried complexes in the southwestern Perm region
  79. Solution of the gravimetric inverse problem using multidimensional grids
  80. Structural and magnetic microinhomogeneities in accessory spinel of the system Fe2+(Cr2–xFex3+)O4 from the Kytlym massif (Urals platinum-bearing belt)
  81. Study of the anomalous magnetic field structure in the Ural region using parallel algorithms
  82. Identification of permeable zones based on the borehole observations of seismoacoustic emissions and helium concentrations
  83. Lunar-solar tidal deformation processes and seismoacoustic emission in the geo-environment volume
  84. 3D DENSITY MODELS CONSTRUCTION METHOD FOR LAYERED MEDIA
  85. MANIFESTATION OF THE PREDURALS DEPRESSION STRUCTURES IN THE MAGNETIC FIELD OF THE ARCTIC URALS
  86. THE NEW METHOD OF SHORT-TERM EARTHQUAKE PREDICTION (RADON ANOMALY ON SAN-ANDREAS FAULT)
  87. New Algorithm and Computer Technology for Density Model Construction
  88. Seismoacoustic emission and electromagnetic radiation of fractured rocks in deep wells
  89. Construction of regional geophysical models based on the joint interpretation of gravitaty and seismic data
  90. Temporal variability of ambient seismic noise at great depths
  91. The solution of the Cauchy integral equation with a real-definite operator
  92. Determination of periodicities of low-frequency deformation processes in electromagnetic radiation variations in the Ural Superdeep well
  93. Geophysical Researches on Excavations of the Bronze Age Fortified Settlement in Southern Ural Mountains
  94. On the Construction of Density Sections Using Gravity Data
  95. Techniques for separating gravity field sources in depth
  96. On 3D Electromagnetic Inverse Problems in the Case of Arbitrary Relief
  97. Inverse Problems of Electromagnetic Geophysical Fields
  98. 19. Theoretical Inverse Problems for 3-D Electromagnetic Fields
  99. Algorithm and Numerical Examples 3D Electromagnetic Inverse Problem
  100. On 3D Nonlinear Electromagnetic Inverse Problem