论文标题
小行星(196256)2003 EH1的动力学演变和力模型
The dynamical evolution and the force model for asteroid (196256) 2003 EH1
论文作者
论文摘要
本文致力于属于阿莫尔组的小行星(196256)2003 EH1的动力学。众所周知,小行星2003 EH1与主要的流星之一相关,淋浴是二十字体。在这项工作中,我们分析了各种扰动因子对小行星运动的影响。基于标称轨道演化和初始置信区的大小,通过五种不同的方法完成了扰动估计。对2003 EH1动态演化的最重要影响是来自太阳,主要行星和月球的引力,以及太阳的相对论效应(RE)。地球,太阳和木星的污秽不太重要。来自帕拉斯,谷神星,维斯塔和冥王星的重力扰动;还有行星,月亮和冥王星的雷。通过将其运动方程与500个克隆整合在一起,研究了小行星2003 EH1的混沌性和演变的研究。时间间隔(从1000年到4000年)已通过集成精度估计来确定。我们计算了附近轨道(MEGNO)的平均指数生长因子,并发现仅在1700到2300的间隔中,Megno仅小于两个。2300年后,MEGNO参数增加表明运动不稳定性。它表明,从现在起300年的时间间隔,轨道可以被视为规则,在此间隔之外被视为混乱。我们认为,原因是与木星的小行星经常接近接近方法和apsidal节点共振的重叠。
This paper is devoted to the dynamics of asteroid (196256) 2003 EH1 that belongs to the Amor group. It is known that the asteroid 2003 EH1 is associated with one of the main annual meteor showers the Quadrantids. In this work we analyze the influence of various perturbing factors on the asteroid motion. The perturbations estimation was done by five different methods based on the nominal orbit evolution and the size of the initial confidence region. The most significant influences on the dynamical evolution of 2003 EH1 are gravitational forces from the Sun, major planets and the Moon, and the relativistic effects (RE) of the Sun. Of less importance are the Earth, the Sun and Jupiter oblateness; gravitational perturbations from Pallas, Ceres, Vesta and Pluto; and the RE of planets, the Moon, and Pluto. The researches of chaoticity and evolution of asteroid 2003 EH1 were examined by integrating its motion equations along with 500 clones. The time interval (from 1000 to 4000 years) has been determined by integration precision estimation. We calculated the mean exponential growth factor of nearby orbits (MEGNO) and found that MEGNO less than two only in the interval from 1700 to 2300. After 2300 year the MEGNO parameter increases that indicates motion instability. It shows that the orbit may be considered as regular on the time interval of 300 years from now, and as chaotic outside this interval. The reason, as we suppose, is frequent close approaches of the asteroid with Jupiter and the overlap of apsidal nodal resonances.