The Chandler wobble and Solar day

D. Kiryan, G. Kiryan
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Abstract

This work supplements the main results given in our paper "The Chandler wobble is a phantom" (eprint arXiv:1109.4969) and refines the reasons for which researchers previously failed in interpreting the physical meaning of observed zenith distance variations.The main reason for the Chandler wobble problem emergence was that, in analyzing time series with the step multiple of solar day, researchers ignored the nature of the solar day itself. In addition, astrometric instruments used to measure the zenith distance relative the local normal are, by definition, gravity independent, since the local normal is tangential to the gravitation field line at the observation point. Therefore, the measured zenith distances involve all the instantaneous gravitational field distortions. The direct dependence of the zenith distance observations on the gravitational effect of the Moon's perigee mass enables us to conclude that the Chandler wobble is fully independent of the possible motion of the Earth's rotation axis within the Earth.
钱德勒摆动和太阳日
这项工作补充了我们的论文“钱德勒摆动是一个幽灵”(eprint arXiv:1109.4969)中给出的主要结果,并改进了研究人员之前未能解释观测到的天顶距离变化的物理意义的原因。钱德勒摆动问题出现的主要原因是,研究人员在分析以太阳日为阶跃倍数的时间序列时,忽略了太阳日本身的性质。此外,用于测量相对于当地法线的天顶距离的天体测量仪器,根据定义是与重力无关的,因为当地法线与观测点的引力场线相切。因此,测量的天顶距离包含了所有的瞬时引力场畸变。天顶距离观测直接依赖于月球近地点质量的引力效应,这使我们能够得出这样的结论:钱德勒摆动完全独立于地球自转轴在地球内部的可能运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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