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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Global-scale interactions between the solid Earth and its fluid envelopes at the seasonal time scale
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Global-scale interactions between the solid Earth and its fluid envelopes at the seasonal time scale

机译:固体地球与其流体包膜之间在季节尺度上的全球尺度相互作用

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Changes in the mass distribution inside the surface fluid envelopes in response to climate changes affect the Earth by changing its gravitational field, its rotation and the position of its centre of mass. At subdecadal time scales, temporal changes of these global Earth parameters are now currently determined by space geodesy. Here we focus on annual variations which carry the largest energy. We combine space geodesy-derived annual variations of the centre of mass position, rotation pole position and dynamical flattening, allowing us to map annual variations of the long-wavelength geoid. Annual amplitude maxima amounting to 5 mm are located over continental regions of the Northern Hemisphere. These variations result from seasonal transfers of air and water mass among atmosphere, oceans, continents and ice sheets as evidenced by a comparison with the annually varying geoid deduced from hydrometeorological loading data (atmospheric surface pressure, snow and soil moisture load, ocean mass load).
机译:响应气候变化,地表流体包层内部质量分布的变化会通过改变地球的引力场,地球的自转和质心位置来影响地球。在近十年的时间尺度上,这些全球地球参数的时间变化目前由空间大地测量法确定。在这里,我们重点讨论携带最大能量的年度变化。我们将空间大地测量学派生的质心位置,旋转极位置和动力展平中心的年度变化进行了组合,从而可以绘制长波长大地水准面的年度变化。每年最大振幅为5毫米,位于北半球的大陆区域。这些变化是由于大气,海洋,大陆和冰原之间空气和水的季节性转移所致,与从水文气象负荷数据(大气表面压力,雪和土壤湿度负荷,海洋质量负荷)得出的逐年变化的大地水准面的比较证明了这一点。 。

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