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Temporal–Spatial Surface Seasonal Mass Changes and Vertical Crustal Deformation in South China Block from GPS and GRACE Measurements

机译:基于GPS和GRACE测量的华南地块时空地表季节性质量变化和地壳垂直变形

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摘要

The solid Earth deforms elastically in response to variations of surface atmosphere, hydrology, and ice/glacier mass loads. Continuous geodetic observations by Global Positioning System (CGPS) stations and Gravity Recovery and Climate Experiment (GRACE) record such deformations to estimate seasonal and secular mass changes. In this paper, we present the seasonal variation of the surface mass changes and the crustal vertical deformation in the South China Block (SCB) identified by GPS and GRACE observations with records spanning from 1999 to 2016. We used 33 CGPS stations to construct a time series of coordinate changes, which are decomposed by empirical orthogonal functions (EOFs) in SCB. The average weighted root-mean-square (WRMS) reduction is 38% when we subtract GRACE-modeled vertical displacements from GPS time series. The first common mode shows clear seasonal changes, indicating seasonal surface mass re-distribution in and around the South China Block. The correlation between GRACE and GPS time series is analyzed which provides a reference for further improvement of the seasonal variation of CGPS time series. The results of the GRACE observations inversion are the surface deformations caused by the surface mass change load at a rate of about −0.4 to −0.8 mm/year, which is used to improve the long-term trend of non-tectonic loads of the GPS vertical velocity field to further explain the crustal tectonic movement in the SCB and surroundings.
机译:固体地球响应于表面大气,水文学和冰/冰川质量负荷的变化而弹性变形。全球定位系统(CGPS)站和重力恢复和气候实验(GRACE)进行的连续大地观测记录了这种变形,以估计季节性和长期质量变化。在本文中,我们介绍了GPS和GRACE观测所识别的华南地块(SCB)地表质量变化的季节性变化和1999年至2016年的记录。我们使用了33个CGPS站来构造一个时间系列坐标更改,这些更改由SCB中的经验正交函数(EOF)分解。当我们从GPS时间序列中减去GRACE模型的垂直位移时,平均加权均方根(WRMS)降低为38%。第一种共模模式显示出明显的季节变化,表明华南区块及其周围地区的季节性表面质量重新分布。分析了GRACE与GPS时间序列之间的相关性,为进一步改善CGPS时间序列的季节变化提供参考。 GRACE观测值反演的结果是由表面质量变化载荷引起的表面变形,其速率约为-0.4至-0.8 mm /年,这可用于改善GPS的非构造载荷的长期趋势垂直速度场进一步解释了SCB及其周围地区的地壳构造运动。

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