概括
大气扭矩驱动不规则的日长 (LOD) 变化. 在LOD和大气角动量 (AAM) 之间存在连贯性,直到8天,但较短的时间因噪音而缺乏连贯性.
科学领域:
- 地质物理学 地质物理学
- 大气科学 大气科学
- 天文学 天文学
背景情况:
- 不规则的日长 (LOD) 波动主要是由大气扭矩驱动的.
- 了解地球的旋转变化对于精确的计时和地球物理研究至关重要.
研究的目的:
- 调查日长 (LOD) 变化与大气角动量 (AAM) 之间的关系.
- 为了确定LOD和AAM数据在不同时间尺度上的差异的原因.
主要方法:
- 对LOD和AAM的时间序列数据的分析.
- 一致性分析以确定不同时期LOD和AAM之间的相关性.
- 对地球旋转变化的现有模型的审查.
主要成果:
- 在LOD和AAM时间序列之间观察到显著的一致性,直到8天的时间段.
- 在较短的时间内缺乏一致性是由于两个数据集的信号噪声比率下降.
- 现有的潮地球旋转变化的模型可能需要改进,以包括海洋影响.
结论:
- 大气过程是导致短期LOD变化的主要原因.
- 需要进一步的研究来解决LOD和AAM之间的差异,可能涉及海洋影响或未建模的角度动量组件.
相关概念视频
Angular Momentum
Angular momentum characterizes an object's rotational motion and is defined as the moment of its linear momentum about a specified point O. When a particle moves along a curved path in the x-y plane, the scalar formulation calculates the magnitude of its angular momentum, utilizing the moment arm (d), representing the perpendicular distance from point O to the line of action of the linear momentum. Despite being scalar in formulation, angular momentum is inherently a vector quantity. Its...
Angular Momentum: Single Particle
Angular momentum is directed perpendicular to the plane of the rotation, and its magnitude depends on the choice of the origin. The perpendicular vector joining the linear momentum vector of an object to the origin is called the “lever arm.” If the lever arm and linear momentum are collinear, then the magnitude of the angular momentum is zero. Therefore, in this case, the object rotates about the origin such that it lies on the rim of the circumference defined by the lever arm magnitude.
The...
The...
Conservation of Angular Momentum
A system's total angular momentum remains constant if the net external torque acting on the system is zero. Considering a system that consists of n tiny particles, the angular momentum of any tiny particle may change, but the system's total angular momentum would remain constant. The principle of conservation of angular momentum only considers the net external torque acting on the system. While there are internal forces exerted by different particles within the system that also produce internal...
Conservation of Angular Momentum: Application
A system's total angular momentum remains constant if the net external torque acting on the system is zero. Examples of such systems include a freely spinning bicycle tire that slows over time due to torque arising from friction, or the slowing of Earth's rotation over millions of years due to frictional forces exerted on tidal deformations. However in the absence of a net external torque, the angular momentum remains conserved. The conservation of angular momentum principle requires a change...
Gyroscope: Precession
Precession can be demonstrated effectively through a spinning top. If a spinning top is placed on a flat surface near the surface of the Earth at a vertical angle and is not spinning, it will fall over due to the force of gravity producing a torque acting on its center of mass. However, if the top is spinning on its axis, it precesses about the vertical direction, rather than topple over due to this torque. Precessional motion is a combination of a steady circular motion of the axis and the...
Apparent Weight and the Earth's Rotation
Since all objects on the Earth's surface move through a circle every 24 hours, there must be a net centripetal force on each object, directed towards the center of that circle. The points of the north and south poles are the only exception to this rule.
For an object on the Earth's equator, the net centripetal force that accounts for its rotation is the Earth's pull towards its center, or the weight minus the normal force that prevents it from piercing into the Earth's surface. This force,...
For an object on the Earth's equator, the net centripetal force that accounts for its rotation is the Earth's pull towards its center, or the weight minus the normal force that prevents it from piercing into the Earth's surface. This force,...


