Effect of core electrical conductivity on core surface flow models
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DOI[10.1186/s40623-020-01269-0]to the data of the same series
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- Material Type
- 記事
- Author/Editor
- Masaki Matsushima
- Publication, Distribution, etc.
- Publication Date
- 2020-11-26
- Publication Date (W3CDTF)
- 2020-11-26
- Periodical title
- EPS : Earth, Planets and Space
- No. or year of volume/issue
- 72(180)
- Volume
- 72(180)
- ISSN (Periodical Title)
- 1880-5981
- ISSN-L (Periodical Title)
- 1343-8832
- Text Language Code
- eng
- DOI
- 10.1186/s40623-020-01269-0
- Persistent ID (NDL)
- info:ndljp/pid/11616265
- Collection
- Collection (Materials For Handicapped People:1)
- Collection (particular)
- 国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > その他
- Acquisition Basis
- オンライン資料収集制度
- Date Accepted (W3CDTF)
- 2021-01-13T14:13:05+09:00
- Date Captured (W3CDTF)
- 2021-01-13
- Format (IMT)
- application/pdf
- Access Restrictions
- 国立国会図書館内限定公開
- Service for the Digitized Contents Transmission Service
- 図書館・個人送信対象外
- Availability of remote photoduplication service
- 可
- Periodical Title (URI)
- Periodical Title (Persistent ID (NDL))
- info:ndljp/pid/11467692
- Data Provider (Database)
- 国立国会図書館 : 国立国会図書館デジタルコレクション
- Summary, etc.
- コレクション : 国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > その他
- DOI
- 10.1186/s40623-020-01269-0
- Access Restrictions
- インターネット公開
- Related Material
- Effect of core electrical conductivity on core surface flow models
- Related Material (URI)
- Is Referenced By
- A candidate secular variation model for IGRF-13 based on MHD dynamo simulation and 4DEnVar data assimilation
- References
- The high conductivity of iron and thermal evolution of the Earth’s coreRadial vorticity constraint in core flow modelingThe reversed and normal flux contributions to axial dipole decay for 1880–2015Numerical modeling of the geodynamo: Mechanisms of field generation and equilibrationGeomagnetic fluctuations reveal stable stratification at the top of the Earth’s coreEffects of boundary layers on magnetic field behavior in an MHD dynamo modelObservation of magnetic diffusion in the Earth's outer core from Magsat, Ørsted, and CHAMP dataExperimental determination of the electrical resistivity of iron at Earth’s core conditionsThermal Conductivity and Electrical Resistivity of Solid Iron at Earth’s Core Conditions from First PrinciplesPossibility of a low P-wave velocity layer in the outermost core from global SmKS waveformsGeophysical Fluid DynamicsOn the strength of electric currents and zonal magnetic fields at the top of the Earth's core: Methodology and preliminary estimatesPenetration of columnar convection into an outer stably stratified layer in rapidly rotating spherical fluid shellsDirect measurement of thermal conductivity in solid iron at planetary core conditionsTowards a realistic theory of the geodynamoGeomagnetic constraints on stratification at the top of Earth’s coreGeodynamo Conductivity LimitsAre geomagnetic data consistent with stably stratified flow at the core–mantle boundary?Numerical Dynamo SimulationsCore surface flow modelling with geomagnetic diffusion in a boundary layerMotions at core surface in the geostrophic approximationThe 1969 geomagnetic impulse and spin-up of the Earth's liquid coreOuter-core compositional stratification from observed core wave speed profilesThe influence of magnetic fields in planetary dynamo modelsDoes the whole of the Earth's core convect?Thermal and electrical conductivity of iron at Earth’s core conditionsThe 2003 geomagnetic jerk and its relation to the core surface flowsGeodynamo, Solar Wind, and Magnetopause 3.4 to 3.45 Billion Years AgoNonuniqueness of inverted core‐mantle boundary flows and deviations from tangential geostrophyHistory of the lunar orbitLarge-Scale Flow in the CoreGeneration mechanism of a dipole field by a magnetohydrodynamic dynamoOn Analysis of the Secular VariationThe competition between Lorentz and Coriolis forces in planetary dynamos
- References (URI)
- Data Provider (Database)
- 国立情報学研究所 : CiNii Research
- Original Data Provider (Database)
- 雑誌記事索引データベースCrossref科学研究費助成事業データベース学術機関リポジトリデータベースCrossref
- Bibliographic ID (NDL)
- 11616265