MODELLING THE EVOLUTION OF THE TWO-PLANETARY THREE-BODY SYSTEM OF VARIABLE MASSES

IF 1.6 3区 数学 Q1 MATHEMATICS Mathematical Modelling and Analysis Pub Date : 2023-10-20 DOI:10.3846/mma.2023.18453
Zhanar Imanova, Alexander Prokopenya, Mukhtar Minglibayev
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Abstract

A classical non-stationary three-body problem with two bodies of variable mass moving around the third body on quasi-periodic orbits is considered. In addition to the Newtonian gravitational attraction, the bodies are acted on by the reactive forces arising due to anisotropic variation of the masses. We show that Newtonian’s formalism may be generalized to the case of variable masses and equations of motion are derived in terms of the osculating elements of aperiodic motion on quasiconic sections. As equations of motion are not integrable the perturbative method is applied with the perturbing forces expanded into power series in terms of eccentricities and inclinations which are assumed to be small. Averaging these equations over the mean longitudes of the bodies in the absence of a mean-motion resonances, we obtain the differential equations describing the evolution of orbital parameters over long period of time. We solve the evolution equations numerically and demonstrate that the mass change modify essentially the system evolution.
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变质量两行星三体系统演化的建模
考虑一类经典的非平稳三体问题,其中两个变质量的物体沿准周期轨道绕第三个物体运动。除了牛顿的万有引力外,物体还受到由于质量各向异性变化而产生的反作用力的作用。我们证明了牛顿的形式可以推广到变质量的情况,并根据准标志截面上的非周期运动的接触元导出了运动方程。由于运动方程不可积,采用摄动法,将摄动力展开成偏心率和倾角的幂级数,假设偏心率和倾角较小。在没有平均运动共振的情况下,将这些方程在天体的平均经度上进行平均,我们得到了描述轨道参数在长时间内演变的微分方程。通过数值求解演化方程,证明了质量变化实质上改变了系统的演化。
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来源期刊
CiteScore
2.80
自引率
5.60%
发文量
28
审稿时长
4.5 months
期刊介绍: Mathematical Modelling and Analysis publishes original research on all areas of mathematical modelling and analysis.
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