书目名称 | Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars | 编辑 | Hideyuki Hotta | 视频video | | 概述 | This is a prize winning thesis, nominated for Springer Theses by the University of Tokyo.Reveals for the first time in the research filed, the understanding of the solar mechanism near surface shear l | 丛书名称 | Springer Theses | 图书封面 |  | 描述 | .This thesis describes the studies on the solar interior where turbulent thermal convection plays an important role. The author solved, for the first time, one of the long-standing issues in solar physics, i.e., the maintenance mechanism of the solar differential rotation in the near-surface shear layer. The author attacked this problem with a newly developed approach, the reduced speed of sound technique, which enabled him to investigate the surface and deep solar layers in a self-consistent manner. This technique also made it possible to achieve an unprecedented performance in the solar convection simulations for the usage of the massively parallel supercomputers such as the RIKEN K system. It was found that the turbulence and the mean flows such as the differential rotation and the meridional circulation mutually interact with each other to maintain the flow structures in the Sun. Recent observations by helioseismology support the author‘s proposed theoretical mechanism. The book also addresses the generation of the magnetic field in such turbulent convective motions, which is an important step forward for solar cyclic dynamo research.. | 出版日期 | Book 2015 | 关键词 | Ionization Effect in Solar Global Model; RIKEN K Computer; Reduced Speed of Sound Technique (RSST); Sol | 版次 | 1 | doi | https://doi.org/10.1007/978-4-431-55399-1 | isbn_softcover | 978-4-431-56258-0 | isbn_ebook | 978-4-431-55399-1Series ISSN 2190-5053 Series E-ISSN 2190-5061 | issn_series | 2190-5053 | copyright | Springer Japan 2015 |
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书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars影响因子(影响力) 
书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars影响因子(影响力)学科排名 
书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars网络公开度 
书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars网络公开度学科排名 
书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars被引频次 
书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars被引频次学科排名 
书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars年度引用 
书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars年度引用学科排名 
书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars读者反馈 
书目名称Thermal Convection, Magnetic Field, and Differential Rotation in Solar-type Stars读者反馈学科排名 
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