期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Mars geodesy,rotation and gravity 被引量:2
1
作者 Pascal Rosenblatt Veronique Dehant 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2010年第8期713-736,共24页
This review provides explanations of how geodesy, rotation and gravity can be addressed using radioscience data of an orbiter around a planet or of the lander on its surface. The planet Mars is the center of the discu... This review provides explanations of how geodesy, rotation and gravity can be addressed using radioscience data of an orbiter around a planet or of the lander on its surface. The planet Mars is the center of the discussion. The information one can get from orbitography and radioscience in general concerns the global static gravitational field, the time variation of the gravitational field induced by mass exchange between the atmosphere and the ice caps, the time variation of the gravitational field induced by the tides, the secular changes in the spacecraft's orbit induced by the little moons of Mars named Phobos and Deimos, the gravity induced by particular targets, the Martian ephemerides, and Mars' rotation and orientation. The paper addresses as well the determination of the geophysical parameters of Mars and, in particular, the state of Mars' core and its size, which is important for understanding the planet's evolution. Indeed, the state and dimension of the core determined from the moment of inertia and nutation depend in turn on the percentage of light elements in the core as well as on the core temperature, which is related to heat transport in the mantle. For example, the radius of the core has implications for possible mantle convection scenarios and, in particular, for the presence of a perovskite phase transition at the bottom of the mantle. This is also important for our understanding of the large volcanic province Tharsis on the surface of Mars. 展开更多
关键词 planets and satellites mars -- variables rotation gravity and interior of mars
下载PDF
类地行星低阶重力场、自转与内部圈层结构研究进展
2
作者 徐长仪 万妍 +1 位作者 姜衍 魏勇 《地球与行星物理论评(中英文)》 2024年第5期552-562,共11页
低阶重力场和自转参数是类地行星内部结构的函数且指示着其物质成分与演化,一直是深空探测的首要目标.行星自转状态能够直接揭示行星核的密度和大小.随着深空探测数据的逐渐积累和精度的不断提高,低阶重力场和自转观测在行星内部结构,... 低阶重力场和自转参数是类地行星内部结构的函数且指示着其物质成分与演化,一直是深空探测的首要目标.行星自转状态能够直接揭示行星核的密度和大小.随着深空探测数据的逐渐积累和精度的不断提高,低阶重力场和自转观测在行星内部结构,尤其是行星核方面的研究取得了一系列重要进展.本文首先介绍行星主惯性矩张量的基本理论与计算方法,接着介绍行星自转动力学基本理论以及与行星内部结构密切相关的行星自转简正模,并介绍利用低阶重力位系数求解行星主惯性矩张量的方法.本文还总结了利用有限的自转观测和低阶重力场观测确定行星平均密度和平均惯性矩的研究现状,以及反演行星内部结构的基本方法.最后,本文对目前利用低阶重力场、自转观测反演行星和小行星等内部结构方面存在的问题进行了总结与展望,希望为我国未来的深空探测计划提供科学参考与理论支持. 展开更多
关键词 类地行星 内部结构 自转动力学 低阶重力场 行星核大小和密度
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部