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利用运动学轨道提高GRACE时变重力场解算
其他题名Towards a more accurate temporal gravity model from GRACE observations through the kinematic orbits
杨帆1; 王长青2; 许厚泽1; 钟敏2; 周泽兵3
来源期刊地球物理学报
ISSN0001-5733
出版年2017
卷号60期号:1页码:37-49
中文摘要基于变分方程法,本文利用GARCE高精度K波段星间测速数据KBRR,结合德国格拉茨大学发布的运动学轨道和GFZ发布的简动力学轨道作为两种伪观测值,分别解算了20052010年60阶全球时变重力场模型Hust-IGGOl与HuSt-IGG02.通过与GRACE官方机构发布的模型和其他国际主流权威模型进行对比,发现基于运动学轨道结合KBRR解算的模型Hust-IGG01优于基于简动力学轨道结合KBRR解算的模型Hust-IGG02:在重力场系数C_(20)时间序列的统计数据上.Hust-IGGOl比Hust-IGG02更接近SLR结果,在如C_(60)、C_(70)、C_(80)以及C_(90)等重力场低阶项上的数学统计均更接近CSR RL05; Hust-IGG01的重力场系数误差分布和GFZ RL05在同一水平,而Hust-IGG02的误差估计过于乐观;Hust-IGG02在主要质量变化区域上存在5%?10%信号低估,而Hust-IGGOl能完全达到国际主流机构利用GPS观测数据的解算水平,Hust-IGGOl与官方机构CSR、JPL和GFZ最新模型在格陵兰岛的冰川消融年际趋势分别是-125.4、-125.4、-127.3、-124.3 Gt·a~(-1), 在亚马逊流域的平均等效水高周年振幅分别是17.56、17.40、17.46、17.22 cm,在撒哈拉沙漠的平均等效水高均方差分别是0.87、0.77、1.10、0.87 cm;另外在Hust-IGGOl的实际应用上,本文分析了全球32个主要流域质量变化的年际趋势、周年振幅和半周年振幅三种信号模式,统计结果显示Hust-IGGOl与CSR RL05结果基本吻合.
英文摘要Based on the GRACE Level lb raw data from 2005 to 2010,we have successfully produced an unconstrained monthly gravity field model (Hust-IGGOl) up to d/o 60. Unlike the official dataprocessing centers, we employ the kinematic orbits instead of the GPS measurements as the pseudo observations. Meanwhile,an alternative model (Hust-IGG02) using the reduced-dynamic orbits as the pseudo observations is provided as well. We aim to understand the impacts of orbit pseudo observations on the accuracy of the ultimate gravity products. To this end, Hust-IGGOl and Hust-IGG02 are fully compared to each other, such that we are able to identify which type of orbit pseudo observations is more desired for the gravity inversion. Experiments demonstrate that Hust-IGGOl performs better in terms of signal to noise level than Hust-IGG02 in the following aspects: (a) Hust-IGGOl improves the estimation of geopotential coefficients at low degrees, e. g.,C_(20) C_(60) C_(70) C_(80) C_(90), which are closer to SLR or CSR RL05 results; (b) the induced formal error of Hust-IGGOl is appropriate and comparable to that of GFZ RL05a,while Hust-IGG02 poses too optimistic formal error; (c) over three typical regions of interest (Amazon,Greenland and Sahara),the mass variation derived from Hust-IGG02 has been under-estimated by about 5%?10% with respect to those from the official products, while Hust-IGGOl has achieved a fairly comparable accuracy. The latter is supported by the numerical results such as: the yearly trend of glacial melting over Greenland derived from Hust-IGGOl,CSR RL05,GFZ RL05a and JPL RL05 are -125.4 Gt ·a~(-1),-125.4 Gt ·a~(-1),-127.3 Gt ·a~(-1) and -124.3 Gt ·a~(-1),respectively; the annual amplitude of mass change in terms of EWH (equivalent water height) over Amazon is 17.56 cm,17.40 cm, 17.46 cm and 17.22 cm, respectively; the RMS of mass change over Sahara desert is 0.87 cm, 0.77 cm, 1.10 cm and 0.87 cm, respectively. An additional validation is undertaken as well, to investigate the performance of Hust-IGGOl on the scale of basins,and the results demonstrate that the induced annual amplitude,semi-annual amplitude and yearly trend of mass variations agree with those of CSR RL05 over the 32 selected major river basins. In summary, our comparisons above suggest that an appropriate kinematic orbit is more beneficial than the reduceddynamic orbits,for the accurate gravity recovery from the GRACE observations.
中文关键词时变重力场 ; 运动学轨道 ; 简动力学轨道 ; 等效水高
英文关键词GRACE GRACE Temporal gravity field Kinematic orbit Reduced-dynamic orbit Equivalent water height
语种中文
国家中国
收录类别CSCD
WOS类目GEOSCIENCES MULTIDISCIPLINARY
WOS研究方向Geology
CSCD记录号CSCD:5899915
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/235791
作者单位1.华中科技大学物理学院地球物理研究所, 大地测量与地球动力学国家重点实验室, 武汉, 湖北 430074, 中国;
2.中国科学院测量与地球物理研究所, 大地测量与地球动力学国家重点实验室, 武汉, 湖北 430077, 中国;
3.华中科技大学物理学院地球物理研究所, 武汉, 湖北 430074, 中国
推荐引用方式
GB/T 7714
杨帆,王长青,许厚泽,等. 利用运动学轨道提高GRACE时变重力场解算[J],2017,60(1):37-49.
APA 杨帆,王长青,许厚泽,钟敏,&周泽兵.(2017).利用运动学轨道提高GRACE时变重力场解算.地球物理学报,60(1),37-49.
MLA 杨帆,et al."利用运动学轨道提高GRACE时变重力场解算".地球物理学报 60.1(2017):37-49.
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