How did the Moon form and why is it crucial to life?月球是如何形成的?它为什么对生命至关重要?
It would seem simplest to presume that the Earth and its Moon were simply two concentrations of matter from the protoplanetary disc around the Sun that were near enough together to orbit each other. But the studies to date suggest a much more extraordinary scenario. Also extraordinary is the suggestion by Ward and Brownlee that the presence and nature of the Moon was essential for the development of advanced life on the Earth. 似乎最简单的假设是,地球和它的月球只是从太阳周围的原行星盘中形成的两个物质聚集体,它们彼此距离足够近而能够相互绕行。但迄今为止的研究却提出了一个更加非凡的场景。同样非凡的是,Ward和Brownlee提出的月球的存在和性质对于地球上高级生命的发展是必不可少的。
![]() The Earth's orbital tilt angle or "obliquity" with respect to the ecliptic plane is 23.5° and conservation of angular momentum demands that it maintain that direction in space unless acted upon by an unbalanced torque. If the Earth were perfectly spherically symmetric, then external gravitational forces could not exert a torque on it because the nature of the gravitational attraction would be equivalent to the action on a point mass at the center of the Earth. But the Earth is an oblate spheroid, with larger diameter at the equator and the mass distribution is not exactly radially uniform, so torques are possible. Gravitational forces also produce tidal bulges which distort the spherical symmetry. But if the tilt angle changed, it could cause major climatic changes. 地球相对于黄道平面的轨道倾角或'倾角'为23.5°,角动量守恒要求它在空间中保持这个方向,除非受到不平衡力矩的作用。如果地球是完美球形对称的,外部引力作用力无法对其施加力矩,因为引力作用等同于作用在地球中心的质点上的力。但地球是一个扁球体,赤道直径较大,质量分布并不完全径向均匀,因此力矩是可能的。引力作用还会产生潮汐隆起,破坏球形对称性。但如果倾角发生变化,可能会引起重大气候变化。
Ward and Brownlee's assessment of the Earth's spin axis stability is as follows. "This angle is nearly constant for hundreds of millions of years because of gravitational effects of the Moon. Without the Moon, the tilt angle would wander in response to the gravitational pulls of the sun and Jupiter. The monthly motion of our large Moon damps any tendency for the tilt axis to change. If the Moon were smaller or more distant, or if Jupiter were larger or closer, or if Earth were closer to or further from the the sun, the Moon's stabilizing influence would be less effective. Without a large moon, Earth's spin axis might vary as much as 90 degrees. Mars, a planet with the same spin rate and axis tilt, but no large moon, is believed to have exhibited changes to its tilt axis of 45 degrees or more." Analyzing the relative motions and influences of four bodies, three of which are orbiting and spinning, is not for the faint of heart. Such problems are not solvable analytically, but must be approached by numerical approximations. Ward and Brownlee cite the work of Laskar and colleagues for doing model calculations to assess the Moon's importance in stabilizing the Earth's tilt angle. 分析四个天体之间的相对运动和影响,其中三个正在轨道运动并自转,这并非易事。此类问题无法解析求解,必须采用数值近似方法。Ward和Brownlee引用了Laskar及其同事的工作,用于进行模型计算,以评估月球在稳定地球倾角方面的重要性。
沃德和布朗利对地球自旋轴稳定性的评估如下。'这个角度在数亿年内几乎保持不变,这是由于月球的引力作用。如果没有月球,倾斜角度会因太阳和木星的引力拉扯而发生变化。我们较大的月球每月的运动会抑制自转轴任何变化的倾向。如果月球更小或更远,或者木星更大或更近,或者地球更接近或更远离太阳,月球的稳定作用就会减弱。没有大型月球的话,地球的自旋轴可能会变化多达90度。火星拥有与地球相同的自转速度和轴倾角,但没有大型月球,被认为其轴倾角的变化可能达到45度或更多。 |
Index References Ward & Brownlee Ch 10 Laskar, J. et al. 索引参考Ward & Brownlee第10章,Laskar, J.等。 | ||||
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