Magnetotelluric source effect due to 3D ionospheric current systems using the complex image method for 1D conductivity structures
スポンサーリンク
概要
著者
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Pirjola Risto
Finnish Meteorological Inst. Helsinki Fin
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Pirjola R
Finnish Meteorological Institute Geophysical Research Division
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VIJANEN Ari
Finnish Meteorological Institute, Geophysical Research Division
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AMM Olaf
Finnish Meteorological Institute, Geophysical Research Division
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Amm Olaf
Finnish Meteorological Institute Geophysical Research Division
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Vijanen Ari
Finnish Meteorological Institute Geophysical Research Division
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Viljanen Ari
Finnish Meteorological Inst. Helsinki Fin
関連論文
- Effects of interactions between stations on the calculation of geomagnetically induced currents in an electric power transmission system
- An Attempt to Reduce Induction Source Effects at High Latitudes
- Magnetotelluric source effect due to 3D ionospheric current systems using the complex image method for 1D conductivity structures
- Ionospheric Elementary Current Systems in Spherical Coordinates and Their Application
- One-dimensional upward continuation of the ground magnetic field disturbance using spherical elementary current systems
- Separation of the geomagnetic variation field on the ground into external and internal parts using the spherical elementary current system method
- One-dimensional spherical elementary current systems and their use for determining ionospheric currents from satellite measurements
- Ground effects of space weather investigated by the surface impedance
- Properties of matrices included in the calculation of geomagnetically induced currents (GICs) in power systems and introduction of a test model for GIC computation algorithms
- Effects of interactions between stations on the calculation of geomagnetically induced currents in an electric power transmission system
- Eigenvalues and eigenvectors of the transfer matrix involved in the calculation of geomagnetically induced currents in an electric power transmission network
- Source Effect on Geomagnetic Induction Vectors in the Fennoscandian Auroral Region
- Derivation of characteristics of the relation between geomagnetic and geoelectric variation fields from the surface impedance for a two-layer earth