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A supplementary note on constructing the general Earth's rotation theory

机译:关于构建总体旋转理论的补充说明

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Representing a post-scriptum supplementary to a previous paper of the authors Brumberg & Ivanova (2011) this note aims to simplify the practical development of the Earth's rotation theory, in the framework of the general planetary theory, avoiding the non-physical secular terms and involving the separation of the fast and slow angular variables, both for planetary-lunar motion and Earth's rotation. In this combined treatment of motion and rotation,the fast angular terms are related to the mean orbital longitudes of the bodies, the diurnal and Euler rotations of the Earth. The slow angular terms are due to the motions of pericenters and nodes, as well as the precession of the Earth. The combined system of the equations of motion for the principal planets and the Moon and the equations of the Earth's rotation is reduced to the autonomous secular system with theoretically possible solution in a trigonometric form. In the above-mentioned paper, the Earth's rotation has been treated in Euler parameters. The trivial change of the Euler parameters to their small declinations from some nominal values may improve the practical efficiency of the normalization of the Earth's rotation equations. This technique may be applied to any three-axial rigid planet. The initial terms of the corresponding expansions are given in the Appendix.
机译:代表对提交人Brumberg&Ivanova(2011)的上一篇文章的文本课程本说明旨在简化地球旋转理论的实际发展,在总行星理论的框架中,避免了非物质世俗术语涉及快速和慢角变量的分离,两者都是行星 - 月球运动和地球的旋转。在这种运动和旋转的组合处理中,快速角度术语与体的平均轨道长度有关,地球的昼夜和欧拉旋转。慢角术语是由于围闭和节点的运动,以及地球的动力。主要行星和月亮的运动方程的组合系统以及地球旋转的方程与三角形式的理论上可能的解决方案减少到自主的世俗系统。在上述论文中,地球的旋转已经在欧拉参数中处理。来自某些标称值的欧拉参数的琐碎变化对它们的小拒绝可以提高地球旋转方程式正常化的实际效率。该技术可以应用于任何三轴刚性的行星。附录中给出了相应扩展的初始条款。

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