【24h】

Secular tidal changes in lunar orbit and Earth rotation

机译:月球轨道和地球自转的长期潮汐变化

获取原文
获取原文并翻译 | 示例
           

摘要

Small tidal forces in the Earth-Moon system cause detectable changes in the orbit. Tidal energy dissipation causes secular rates in the lunar mean motion n, semimajor axis a, and eccentricity e. Terrestrial dissipation causes most of the tidal change in n and a, but lunar dissipation decreases eccentricity rate. Terrestrial tidal dissipation also slows the rotation of the Earth and increases obliquity. A tidal acceleration model is used for integration of the lunar orbit. Analysis of lunar laser ranging (LLR) data provides two or three terrestrial and two lunar dissipation parameters. Additional parameters come from geophysical knowledge of terrestrial tides. When those parameters are converted to secular rates for orbit elements, one obtains dn/dt = cent, da/dt = 38.30 +/- 0.08 mm/year, and di/dt = -0.5 +/- 0.1 as/year. Solving for two terrestrial time delays and an extra de/dt from unspecified causes gives /year for the latter; solving for three LLR tidal time delays without the extra de/dt gives a larger phase lag of the N2 tide so that total de/dt = /year. For total dn/dt, there is 1 % difference between geophysical models of average tidal dissipation in oceans and solid Earth and LLR results, and most of that difference comes from diurnal tides. The geophysical model predicts that tidal deceleration of Earth rotation is /cent or 87.5 s/cent for UT1-AT, a 2.395 ms/cent increase in the length of day, and an obliquity rate of 9 as/year. For evolution during past times of slow recession, the eccentricity rate can be negative.
机译:地月系统中的小潮汐力会导致可检测到的轨道变化。潮汐能的消散导致月球平均运动n,半长轴a和偏心率e的长期变化。地表耗散引起n和a的大部分潮汐变化,但是月球耗散会降低离心率。陆地潮汐消散也减慢了地球自转并增加了倾角。潮汐加速模型用于月球轨道的整合。对月球激光测距(LLR)数据的分析提供了两个或三个地面和两个月球消散参数。其他参数来自地面潮汐的地球物理知识。当将这些参数转换为轨道元素的长期速率时,就可以得出dn / dt =分,da / dt = 38.30 +/- 0.08 mm /年,di / dt = -0.5 +/- 0.1 as /年。解决两个地面时延和未指定原因的额外de / dt可以得到后者的/年;在没有额外的de / dt的情况下求解三个LLR潮汐时延会产生更大的N2潮汐相位滞后,因此总de / dt = / year。对于总dn / dt,海洋中的平均潮汐耗散的地球物理模型与固体地球和LLR结果之间存在1%的差异,并且大多数差异来自昼夜潮汐。地球物理模型预测,UT1-AT的地球自转的潮汐减速度为/ cent或87.5 s / cent,一天的持续时间增加2.395 ms / cent,倾角率为9 as / year。对于过去缓慢衰退时期的演变,偏心率可以为负。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号