登录注册
Quick Links : Mindat手册The Rock H. Currier Digital LibraryMindat Newsletter [Free Download]
主页关于 MindatMindat手册Mindat的历史版权Who We Are联系我们于 Mindat.org刊登广告
捐赠给 MindatCorporate Sponsorship赞助板页已赞助的板页在 Mindat刊登 广告的广告商于 Mindat.org刊登广告
Learning CenterWhat is a mineral?The most common minerals on earthInformation for EducatorsMindat ArticlesThe ElementsThe Rock H. Currier Digital LibraryGeologic Time
搜索矿物的性质搜索矿物的化学Mineral Visual ExplorerAdvanced Locality Search随意显示任何一 种矿物Random Locality使用minID搜索邻近产地Search Articles搜索词汇表更多搜索选项
搜索:
矿物名称:
地区产地名称:
关键字:
 
Mindat手册添加新照片Rate Photos产区编辑报告Coordinate Completion Report添加词汇表项目
Mining Companies统计会员列表Mineral MuseumsClubs & Organizations矿物展及活动The Mindat目录表设备设置The Mineral QuizTime Machine
照片搜索Photo GalleriesSearch by ColorPhoto Colour Explorer今天最新的照片昨天最新的照片用户照片相集过去每日精选照片相集Photography

Terra-Nova, Filipe; Amit, Hagay; Choblet, Gaël; Bouffard, Mathieu; Tobie, Gabriel; Čadek, Ondřej (2026) Bottom control on heat transfer in thin spherical shells: Application to ice-covered ocean worlds. Icarus, 457. doi:10.1016/j.icarus.2026.117166

Advanced
   -   Only viewable:
Reference TypeJournal (article/letter/editorial)
TitleBottom control on heat transfer in thin spherical shells: Application to ice-covered ocean worlds
JournalIcarus
AuthorsTerra-Nova, FilipeAuthor
Amit, HagayAuthor
Choblet, GaëlAuthor
Bouffard, MathieuAuthor
Tobie, GabrielAuthor
Čadek, OndřejAuthor
Year2026 (October)Volume457
PublisherElsevier BV
DOIdoi:10.1016/j.icarus.2026.117166Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID20009862Long-form Identifiermindat:1:5:20009862:7
GUID0
Full ReferenceTerra-Nova, Filipe; Amit, Hagay; Choblet, Gaël; Bouffard, Mathieu; Tobie, Gabriel; Čadek, Ondřej (2026) Bottom control on heat transfer in thin spherical shells: Application to ice-covered ocean worlds. Icarus, 457. doi:10.1016/j.icarus.2026.117166
Plain TextTerra-Nova, Filipe; Amit, Hagay; Choblet, Gaël; Bouffard, Mathieu; Tobie, Gabriel; Čadek, Ondřej (2026) Bottom control on heat transfer in thin spherical shells: Application to ice-covered ocean worlds. Icarus, 457. doi:10.1016/j.icarus.2026.117166
In(2026) Icarus Vol. 457. Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Ames (2025) Commun. Earth & Environ. Ocean stratification impedes particulate transport to the plumes of enceladus 6, 63
Not Yet Imported: Progress in Earth and Planetary Science - journal-article : 10.1186/s40645-015-0056-3

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Not Yet Imported: Physical Review Research - journal-article : 10.1103/PhysRevResearch.2.043115

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Běhounková (2010) J. Geophys. Res. Coupling mantle convection and tidal dissipation: Applications to enceladus and Earth-like planets 115, E09011
Bouffard (2025) Nat. Astron. Seafloor hydrothermal control over ocean dynamics in enceladus , 1
Gastine (2025) Icarus Rotating convection with a melting boundary: an application to the icy moons 389
Not Yet Imported: - journal-article : 10.3847/PSJ/acda95

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Kervazo, M., Choblet, G., Tobie, G., Sotin, C., Castillo-Rogez, J., 2019. Tidal dissipation in dione’s porous rocky core: Implication for past geological activity and water-rock interactions. In: EPSC-DPS Joint Meeting 2019. 2019, pp. EPSC–DPS2019.
Kervazo (2022) Icarus Inferring Io’s interior from tidal monitoring 337
Kihoulou (2023) Icarus Topographic response to ocean heat flux anomaly on the icy moons of Jupiter and Saturn 381
Not Yet Imported: - journal-article : 10.1029/2023AV000994

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Saur (2024) Planet. Sci. J. Analysis of Enceladus’s time-variable space environment to magnetically sound its interior 5, 245
Sumita (2002) J. Geophys. Res. Rotating thermal convection experiments in a hemispherical shell with heterogeneous boundary heat flux: Implications for the Earth’s core 107, 2169
Van Hoolst (2024) SSR Geophysical characterization of the interiors of Ganymede, callisto and europa by esa’s Jupiter icy moons explorer 220, 54
Not Yet Imported: - journal-article : 10.3847/PSJ/ad0cba

If you would like this item imported into the Digital Library, please contact us quoting Journal ID


See Also

These are possibly similar items as determined by title/reference text matching only.

 
and/or  
版权所有© mindat.org1993年至2026年,除了规定的地方。 Mindat.org全赖于全球数千个以上成员和支持者们的参与。
To cite: Ralph, J., Von Bargen, D., Martynov, P., Zhang, J., Que, X., Prabhu, A., Morrison, S. M., Li, W., Chen, W., & Ma, X. (2025). Mindat.org: The open access mineralogy database to accelerate data-intensive geoscience research. American Mineralogist, 110(6), 833–844. doi:10.2138/am-2024-9486.
隐私政策 - 条款和条款细则 - 联络我们 - Report a bug/vulnerability Current server date and time: 2026.6.5 10:08:09
Go to top of page