王琳琳1,3,
孙威4,
王婕1,3
1. 南京师范大学地理科学学院, 南京 210023
2. 江苏第二师范学院城市与资源环境学院, 南京 211200
3. 江苏省地理信息资源开发与利用协同创新中心, 南京 210023
4. 上海工程技术大学数理与统计学院, 上海 201620
基金项目: 国家自然科学基金(41807437),江苏高校优势学科建设工程资助项目(164320H116)联合资助
详细信息
作者简介: 王建, 男, 1962年生, 教授, 研究方向为环境变迁与气候变化.E-mail: jwang169@vip.sina.com
中图分类号: P353 收稿日期:2020-04-07
修回日期:2021-07-20
上线日期:2021-10-10
Newinsights into the relationship between planetary tidal force and solar activity
WANG Jian1,2,3,,WANG LinLin1,3,
SUN Wei4,
WANG Jie1,3
1. School of Geography, Nanjing Normal University, Nanjing 210023, China
2. School of urban & Resources and Environment, Jiangsu Second Normal University, Nanjing 211200, China
3. Jiangsu Center for Collaborative Innovation in Geographical Information Resource Development and Application, Nanjing 210023, China
4. School of Mathematic Physics and Statistics, Shanghai University of Engineering Science, Shanghai 201620, China
MSC: P353
--> Received Date: 07 April 2020
Revised Date: 20 July 2021
Available Online: 10 October 2021
摘要
摘要:要解决行星引潮力与太阳活动的关系问题,首先要解决计算方法不同引致的引潮力结果差异的问题.本文从引潮力的计算方法着手分析了不同的计算方法所得出的引潮力的异同,发现过去的引潮力计算方法只能显示出行星公转周期或者会合周期,却反映不出对应于行星公转或者会和半周期的引潮力变化.利用引力与太阳绕转惯性离心力之差计算出来的引潮力,比过去常规的引力之差计算出来的引潮力大两个数量级,并且其引起的太阳潮汐变化相位也大不相同,为重新理解引潮力与太阳活动之间的关系提供了新的视角.利用绕转惯性离心力和引潮力共同解释太阳活动变化特征,比传统引潮力单一因子的解释更有说服力,太阳活动是行星引潮力、太阳绕转惯性离心力等多个因子共同作用的结果.
关键词: 行星引潮力/
计算方法/
太阳活动/
相互关系
Abstract:The relationship between planetary tidal force and solar activity has always been an important issue debated by scientists. Some believe that the planetary tidal force is closely related to solar activity based on the consistency of cycle or change time and space, while others deny that it is the main cause of solar activity because the magnitude of planetary tidal force is too small and the inconsistency of cycle, time and space phase. However, to solve this problem, we must first solve the problem of the difference of tidal force results caused by different calculation methods. Starting from the calculation methods of tidal force, this paper analyzes the similarities and differences of tidal force obtained by different calculation methods, and finds that the past calculation methods of tidal force can only show the planetary revolution cycle or convergence cycle, but can not reflect the change of tidal force corresponding to the half cycle of planetary revolution or convergence. The tidal force calculated by using the difference between gravity and the inertial centrifugal force around the sun is two orders of magnitude larger than the tidal force calculated by the conventional difference of gravity in the past, and the phase of solar tide change caused by it is also very different, which provides a new perspective for re understanding the relationship between tidal force and solar activity. The use of rotational inertia centrifugal force and tidal force to explain the variation characteristics of solar activity is more convincing than the traditional explanation of a single factor of tidal force. Solar activity is the result of the joint action of multiple factors such as planetary tidal force and solar rotational inertia centrifugal force.
Key words:Planetary tidal force/
Calculation methods/
Solar activity/
Correlation
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