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Tectonothermal evolution of solid bodies: terrestrial planets, exoplanets and moons

机译:固体的构造热演化:地球行星,系外行星和卫星

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A framework for understanding the tectonothermal evolution of solid planetary bodies has historically been lacking owing to sparse observational constraints. Developments in simulating the physical interiors and tectonic behaviour of terrestrial planets have allowed insights into the relevant physics and important factors governing planetary behaviour. This contribution summarises the critical factors in determining a planet's tectonic regime, and the application of this framework to understanding terrestrial planet evolution. Advances in modelling have led to the identification of new, unmapped tectonic regimes, such as episodic convection, which has relevance to our understanding of the evolution of the early Earth, Venus and Saturn's moon Enceladus. Coupling of tectonic and atmospheric models for planetary evolution has contributed to our knowledge of Martian and Venusian degassing histories, and recent debate on the tectonic regime of exosolar planets informs outstanding questions on their habitability. Ultimately, a framework for terrestrial planet evolution will couple available cosmochemical, geochemical and astrophysical constraints into an emerging generation of simulation tools, facilitating the mapping of terrestrial planet behaviour over a wide parameter space. View full textDownload full textKEY WORDSgeodynamics, planets, tectonics, mantle convectionRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/08120099.2012.644403
机译:由于稀疏的观测约束,历史上一直缺乏用于理解固体行星体构造热演化的框架。在模拟地球行星的物理内部结构和构造行为方面的发展,使人们对有关物理学和控制行星行为的重要因素有了深入的了解。这一贡献总结了确定行星构造方式的关键因素,以及该框架在理解地球行星演化中的应用。建模方面的进展已导致识别新的,未映射的构造机制,例如情景对流,这与我们对早期地球,金星和土星的月亮土卫二的演化的理解有关。构造模型与大气模型的耦合有助于行星演化,这有助于我们了解火星和金星的除气历史,最近有关系外行星构造状态的辩论为它们的宜居性提供了悬而未决的问题。最终,一个用于地球行星演化的框架将把可用的宇宙化学,地球化学和天体物理约束耦合到新一代的仿真工具中,从而有助于在广阔的参数空间上映射地球行星的行为。查看全文下载全文关键词地球动力学,行星,构造,地幔对流相关的变量add add_id “,pubid:” ra-4dff56cd6bb1830b“};添加到候选列表链接永久链接http://dx.doi.org/10.1080/08120099.2012.644403

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