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Reduction of the Radius and Heat Losses within the Earth and Other Planets in Light of Recent Data

机译:根据最新数据减少地球和其他行星内的半径和热损失

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摘要

A reduction in the radius and considerable variations in the volume, surface area, mass, and average density of the earth were calculated from amplitudes of the Precambrian and present-day surface relief. Over a period of 4 Gyr, the overall reduction in the Earth's radius from heat and mass losses was determined to be 52 km or 1.30 × 10~(-3) cm/year. At the same time, the gravitational contraction of the radius was estimated to be 52.0 km or 1.30 × 10~(-3) cm/year as well. A good correlation between the epochs of global cratonization of the earth's crust and the reduction in the sphere volume was established. The inverse problem of calculating the heat flow from the gravitational contraction of planets was solved. The theoretical value for heat flow on the Moon's surface (1.7 × 10~(18) J/year) is comparable to that measured by American astronauts (1.9 × 10~(18) J/year).
机译:根据前寒武纪的振幅和当今的表面起伏计算出半径的减小以及地球的体积,表面积,质量和平均密度的显着变化。在4 Gyr的时间内,因热量和质量损失而导致的地球半径的总体减少量确定为52 km或1.30×10〜(-3)cm /年。同时,半径的重力收缩估计为52.0 km或1.30×10〜(-3)cm /年。在地壳的全球克拉通化的时代与球体体积的减少之间建立了良好的相关性。解决了根据行星的重力收缩计算热流的反问题。月球表面热流的理论值(1.7×10〜(18)J /年)与美国宇航员测量的理论值(1.9×10〜(18)J /年)相当。

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  • 来源
    《Doklady Earth Sciences》 |2009年第5期|856-861|共6页
  • 作者

    V. V. Orlenok;

  • 作者单位

    Immanuel Kant State University of Russia, ul. Nevskogo 14, Kaliningrad, 236041 Russia;

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