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首页> 外文期刊>Advances in Astronomy >Astronomy and Climate-Earth System: Can Magma Motion under Sun-Moon Gravitation Contribute to Paleoclimatic Variations and Earth’s Heat?
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Astronomy and Climate-Earth System: Can Magma Motion under Sun-Moon Gravitation Contribute to Paleoclimatic Variations and Earth’s Heat?

机译:天文学和气候-地球系统:日月重力作用下的岩浆运动能否促进古气候变化和地球热量?

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Paleoclimate data have yielded variations with periods of ~23, ~40, and ~100 ky. Thermodynamic changes resulting from orbital eccentricity, obliquity, and precession have been ascribed as the cause of the variations although processes within the oceans and atmosphere may have too short memory to explain such variations. In this work, the dynamics of Sun-Moon gravitation (SMG) were explored for a rotating Earth and were determined to have a long memory in magma, a mostly ignored geophysical fluid with a mass ~3,400 times that of the atmosphere plus the oceans. Using the basic motion and gravitation (including obliquity) of the Sun and the Moon, we determined that SMG-induced magma motion could produce paleoclimatic variations with multiple periods (e.g., ~23, ~40, ~80, and ~100 ky), with considerable power for Earth’s heat. Such “reproducible” power could possibly maintain an energetic Earth against collapse, radioactivity, and cooling.
机译:古气候数据的变化周期为〜23,〜40和〜100 ky。尽管海洋和大气中的过程可能记忆不足以解释这种变化,但由于轨道偏心率,倾角和进动引起的热力学变化被认为是造成这种变化的原因。在这项工作中,探索了旋转地球的太阳月亮引力(SMG)的动力学,并确定其在岩浆中具有长记忆,岩浆是一种被忽略的地球物理流体,质量约为大气层和海洋的3,400倍。利用太阳和月球的基本运动和引力(包括倾角),我们确定了SMG诱发的岩浆运动可以产生多个周期(例如〜23,〜40,〜80和〜100 ky)的古气候变化,为地球的热量提供了相当大的动力这种“可复制”的力量可能会维持一个充满活力的地球,使其免于崩溃,放射性和冷却。

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