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Five years’ gravity observation with the superconducting gravimeter OSG#058 at Syowa Station, East Antarctica: gravitational effects of accumulated snow mass

机译:在南极东部Syowa站用超导重力仪OSG#058进行的五年重力观测:积雪质量的重力影响

摘要

Continuous gravimetric observations have been made with three successive generations of superconducting gravimeter over 20 yr at Syowa Station (E, [Math Processing Error]S), East Antarctica. The third-generation instrument, OSG#058, was installed in January 2010 and was calibrated by an absolute gravimeter during January and February, 2010. The estimated scale factor was −73.823 ± 0.053 μGal V−1 (1 μGal = 10−8 m s−2). The first 5 yr of OSG#058 data from 2010 January 7 to 2015 January 10 were decomposed into tidal waves (M3 to Ssa) and other non-tidal components by applying the Bayesian tidal analysis program BAYTAP. Long-term non-tidal gravity residuals, which were obtained by subtracting annual and 18.6 year tidal waves and the predicted gravity response to the Earthu27s variable rotation, showed significant correlation with the accumulated snow depth measured at Syowa Station. The greatest correlation occurred when the gravity variations lagged the accumulated snow depth by 21 d. To estimate the gravitational effect of the accumulated snow mass, we inferred a conversion factor of 3.13 ± 0.08 μGal m−1 from this relation. The accumulated snow depth at Syowa Station was found to represent an extensive terrestrial water storage (the snow accumulation) around Syowa Station, which was estimated from the Gravity Recovery and Climate Experiment satellite gravity data. The snow accumulation around Syowa Station was detectable by the superconducting gravimeter.
机译:在南极东部的Syowa站(E,[Math Processing Error] S),用连续20多年的连续第三代超导重力仪进行了重力观测。第三代仪器OSG#058,于2010年1月安装,并于2010年1月和2010年2月用绝对重力仪进行了校准。估计比例因子为−73.823±0.053μGalV-1(1μGal= 10-8ms -2)。通过应用贝叶斯潮汐分析程序BAYTAP,将2010年1月7日至2015年1月10日的OSG#058数据的前5年分解为潮汐(M3到Ssa)和其他非潮汐分量。长期的非潮汐重力残差是通过减去年度和18.6年的潮汐波以及预测的重力对地球可变旋转而获得的,这些残差与在Syowa站测得的积雪深度具有显着相关性。当重力变化落后积雪深度达21 d时,相关性最大。为了估算积雪质量的引力作用,我们从该关系式推断出转换因子为3.13±0.08μGalm-1。发现Syowa站的积雪深度代表了Syowa站周围广泛的陆地蓄水量(积雪),这是通过重力恢复和气候实验卫星重力数据估算得出的。超导重力仪可检测到Syowa站周围的积雪。

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