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Use of Tetrahedral Finite Element Method for Computing the Gravitation of Irregular-Shaped Asteroid

机译:使用四面体有限元法计算不规则形状的小行星的引力

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Asteroids are one of the most important targets for deep space exploration.In previous asteroid missions,the accurate estimate of gravity has proved to have a strong influence on the design of the approach orbit and navigation strategy.The wield gravitational field of an asteroid is mainly caused by the irregular overall shape and possible heterogenous mass distribution the interior.We propose to use the finite element method to compute the gravity of irregularly shaped asteroids;this method combines the advantages of the conventional mascon method and the polyhedral method.The tetrahedral meshes can be generated following the conventional division technique.Taking asteroid 216 Kleopatra as an example,we calculate the exterior gravitational field using the above mentioned methodology.We then compare the results from the finite element method and the polyhedral method under a degenerated case,i.e.,with constant density.Then,four different density distribution assumptions are given,and the gravitational fields are calculated respectively.The comparative study and the density distribution assumptions indicate that the proposed method is suitable for modeling an arbitrary asteroid with nonuniform mass distribution.This method is expected to provide reliable gravity data for the design of guidance,navigation,and control systems in future asteroid missions.
机译:小行星是深度空间探索最重要的目标之一。在前一天的小行星任务中,总力的准确估计已经证明对方法轨道和导航策略的设计具有很大的影响。小行星的挥动引力领域主要是由不规则的整体形状和可能的异质量分布引起的内部。我们建议使用有限元方法来计算不规则形状的小行星的重力;该方法结合了传统的Mascon方法和多面体方法的优点。四面体网格可以在传统的分割技术之后产生。作为示例,我们使用上述方法计算外部重力场。然后,然后将来自有限元方法和多面体方法的结果进行比较,即在退化的情况下,即恒定的密度。然后,给出了四种不同的密度分布假设,而t分别计算了引力场。比较研究和密度分布假设表明该方法适用于使用非均匀质量分配建模任意小行星。预期提供了用于设计指导,导航和设计的可靠性重力数据。未来的小行星任务中的控制系统。

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