Numerical modelling of major planets movement on the new interaction principle basis

Numerical integration of the equations of movement of major planets, on the basis of a new principle of interaction is spent. Elements of orbits of major planets on large time interval (1602-2200) are calculated. Results of calculations are compared with elements of the orbits defined according to co...

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Main Author: Anatolii F Zausaev
Format: Article
Language:English
Published: Samara State Technical University 2011-06-01
Series:Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
Subjects:
Online Access:https://journals.eco-vector.com/1991-8615/article/viewFile/21018/17277
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author Anatolii F Zausaev
author_facet Anatolii F Zausaev
author_sort Anatolii F Zausaev
collection DOAJ
description Numerical integration of the equations of movement of major planets, on the basis of a new principle of interaction is spent. Elements of orbits of major planets on large time interval (1602-2200) are calculated. Results of calculations are compared with elements of the orbits defined according to coordinates and speeds by numerical theory DE405. It is shown that elements of orbits of the exterior planets, found on new algorithm, will well be coordinated with dates DE405. For internal planets Venus, the Earth and Mars have insignificant discrepancies in secular offsets of perihelions in comparison with dates DE405.
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spelling doaj.art-a42b366980524b28b0bd6b1449def8202022-12-22T00:08:25ZengSamara State Technical UniversityVestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki1991-86152310-70812011-06-0115211612218435Numerical modelling of major planets movement on the new interaction principle basisAnatolii F Zausaev0Samara State Technical UniversityNumerical integration of the equations of movement of major planets, on the basis of a new principle of interaction is spent. Elements of orbits of major planets on large time interval (1602-2200) are calculated. Results of calculations are compared with elements of the orbits defined according to coordinates and speeds by numerical theory DE405. It is shown that elements of orbits of the exterior planets, found on new algorithm, will well be coordinated with dates DE405. For internal planets Venus, the Earth and Mars have insignificant discrepancies in secular offsets of perihelions in comparison with dates DE405.https://journals.eco-vector.com/1991-8615/article/viewFile/21018/17277orbital elementsnumerical integrationmotion differential equationbarycentric coordinates
spellingShingle Anatolii F Zausaev
Numerical modelling of major planets movement on the new interaction principle basis
Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
orbital elements
numerical integration
motion differential equation
barycentric coordinates
title Numerical modelling of major planets movement on the new interaction principle basis
title_full Numerical modelling of major planets movement on the new interaction principle basis
title_fullStr Numerical modelling of major planets movement on the new interaction principle basis
title_full_unstemmed Numerical modelling of major planets movement on the new interaction principle basis
title_short Numerical modelling of major planets movement on the new interaction principle basis
title_sort numerical modelling of major planets movement on the new interaction principle basis
topic orbital elements
numerical integration
motion differential equation
barycentric coordinates
url https://journals.eco-vector.com/1991-8615/article/viewFile/21018/17277
work_keys_str_mv AT anatoliifzausaev numericalmodellingofmajorplanetsmovementonthenewinteractionprinciplebasis