Contrast analysis between the trajectory of the planetary system and the periodicity of solar activity

The relationship between the periodic movement of the planetary system and its influence on solar activity is currently a serious topic in research. The kinematic index of the planet juncture index has been developed to find the track and variation of the Sun around the centroid of the solar syst...

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Main Authors: W. Sun, J. Wang, J. Chen, Y. Wang, G. Yu, X. Xu
Format: Article
Language:English
Published: Copernicus Publications 2017-05-01
Series:Annales Geophysicae
Online Access:https://www.ann-geophys.net/35/659/2017/angeo-35-659-2017.pdf
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author W. Sun
W. Sun
W. Sun
J. Wang
J. Wang
J. Chen
J. Chen
Y. Wang
G. Yu
X. Xu
author_facet W. Sun
W. Sun
W. Sun
J. Wang
J. Wang
J. Chen
J. Chen
Y. Wang
G. Yu
X. Xu
author_sort W. Sun
collection DOAJ
description The relationship between the periodic movement of the planetary system and its influence on solar activity is currently a serious topic in research. The kinematic index of the planet juncture index has been developed to find the track and variation of the Sun around the centroid of the solar system and the periodicity of solar activity. In the present study, the kinematic index of the planetary system's heliocentric longitude, developed based on the orbital elements of planets in the solar system, and it is used to investigate the periodic movement of the planetary system. The kinematic index of the planetary system's heliocentric longitude and that of the planet juncture index are simulated and analyzed. The numerical simulation of the two kinematic indexes shows orderly orbits and disorderly orbits of 49.9 and 129.6 years, respectively. Two orderly orbits or two disorderly orbits show a period change rule of 179.5 years. The contrast analysis between the periodic movement of the planetary system and the periodicity of solar activity shows that the two phenomena exhibit a period change rule of 179.5 years. Moreover, orderly orbits correspond to high periods of solar activity and disorderly orbits correspond to low periods of solar activity. Therefore, the relative movement of the planetary system affects solar activity to some extent. The relationship provides a basis for discussing the movement of the planetary system and solar activity.
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spelling doaj.art-8ad2bbabfecb43b9b2c301dca2a584592022-12-22T01:06:15ZengCopernicus PublicationsAnnales Geophysicae0992-76891432-05762017-05-013565966910.5194/angeo-35-659-2017Contrast analysis between the trajectory of the planetary system and the periodicity of solar activityW. Sun0W. Sun1W. Sun2J. Wang3J. Wang4J. Chen5J. Chen6Y. Wang7G. Yu8X. Xu9College of Mathematics/College of Geography, Nanjing Normal University, Nanjing, 210023, ChinaSchool of Resources and Environment, Anqing Normal University, Anqing, 246133, ChinaJiangsu Center for Collaborative Innovation in Geographical Information Resource Development and Application, Nanjing, 210023, ChinaCollege of Mathematics/College of Geography, Nanjing Normal University, Nanjing, 210023, ChinaSchool of Resources and Environment, Anqing Normal University, Anqing, 246133, ChinaCollege of Mathematics/College of Geography, Nanjing Normal University, Nanjing, 210023, ChinaJiangsu Center for Collaborative Innovation in Geographical Information Resource Development and Application, Nanjing, 210023, ChinaSchool of Astronomy and Space Science and Key Laboratory of Modern Astronomy and Astrophysics in Ministry of Education, Nanjing University, Nanjing, 210039, ChinaSchool of Resources and Environment, Anqing Normal University, Anqing, 246133, ChinaSchool of Resources and Environment, Anqing Normal University, Anqing, 246133, ChinaThe relationship between the periodic movement of the planetary system and its influence on solar activity is currently a serious topic in research. The kinematic index of the planet juncture index has been developed to find the track and variation of the Sun around the centroid of the solar system and the periodicity of solar activity. In the present study, the kinematic index of the planetary system's heliocentric longitude, developed based on the orbital elements of planets in the solar system, and it is used to investigate the periodic movement of the planetary system. The kinematic index of the planetary system's heliocentric longitude and that of the planet juncture index are simulated and analyzed. The numerical simulation of the two kinematic indexes shows orderly orbits and disorderly orbits of 49.9 and 129.6 years, respectively. Two orderly orbits or two disorderly orbits show a period change rule of 179.5 years. The contrast analysis between the periodic movement of the planetary system and the periodicity of solar activity shows that the two phenomena exhibit a period change rule of 179.5 years. Moreover, orderly orbits correspond to high periods of solar activity and disorderly orbits correspond to low periods of solar activity. Therefore, the relative movement of the planetary system affects solar activity to some extent. The relationship provides a basis for discussing the movement of the planetary system and solar activity.https://www.ann-geophys.net/35/659/2017/angeo-35-659-2017.pdf
spellingShingle W. Sun
W. Sun
W. Sun
J. Wang
J. Wang
J. Chen
J. Chen
Y. Wang
G. Yu
X. Xu
Contrast analysis between the trajectory of the planetary system and the periodicity of solar activity
Annales Geophysicae
title Contrast analysis between the trajectory of the planetary system and the periodicity of solar activity
title_full Contrast analysis between the trajectory of the planetary system and the periodicity of solar activity
title_fullStr Contrast analysis between the trajectory of the planetary system and the periodicity of solar activity
title_full_unstemmed Contrast analysis between the trajectory of the planetary system and the periodicity of solar activity
title_short Contrast analysis between the trajectory of the planetary system and the periodicity of solar activity
title_sort contrast analysis between the trajectory of the planetary system and the periodicity of solar activity
url https://www.ann-geophys.net/35/659/2017/angeo-35-659-2017.pdf
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