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首页> 外文期刊>Journal of Geodesy >Quantifying FES2004 S_2 tidal model from multiple space-geodesy techniques, GPS and GRACE, over North West Australia
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Quantifying FES2004 S_2 tidal model from multiple space-geodesy techniques, GPS and GRACE, over North West Australia

机译:从西北澳大利亚的多种空间大地测量技术,GPS和GRACE量化FES2004 S_2潮汐模型

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摘要

Unmodeled sub-daily ocean S_2 tide signals that alias into lower frequencies have been detected in the analysis of gravity recovery and climate experiment (GRACE) space gravity fields of GRGS. The most significant global S_2 ali-ased signal occurs off the northwest coast of Australia in a shallow continental shelf zone, a region with high tidal amplitudes at a period of 161 days. The GRACE S_2 aliased equivalent water height grids are convolved with Green's functions to produce GRACE aliased tidal loading (GATL) vertical displacements. The analysis of hourly global positioning system (GPS) vertical coordinate estimates at permanent sites in the region confirms the presence of spectral power at the S_2 frequency when the same ocean tide model (FES2004) was used. Thus, deficiencies in the FES2004 ocean tide model are detected both directly and indirectly by the two independent space geodetic techniques. Through simulation, the admittance (ratio of amplitude of spurious long-wavelength output signal in the GRACE time-series to amplitude of unmodeled periodic signals) of the GRACE unmodeled S_2 tidal signals, aliased to a 161-day period, is found to have a global average close to 100%, although with substantial spatial variation. Comparing GATL with unmodeled S_2 tidal sub-daily signals in the vertical GPS time-series in the region of Bro-ome in NW Australia suggests an admittance of 110-130%.
机译:在对GRGS的重力恢复和气候实验(GRACE)空间重力场的分析中,已检测到混叠成低频的未建模次日海洋S_2潮汐信号。全球最重要的S_2别名信号发生在澳大利亚西北海岸的一个浅大陆架区域,该区域的潮汐振幅很高,为期161天。 GRACE S_2别名等效水高度网格与Green函数卷积,以产生GRACE别名潮汐载荷(GATL)垂直位移。对该地区永久性站点进行的每小时全球定位系统(GPS)垂直坐标估计值的分析确定了当使用相同的海潮模型(FES2004)时,在S_2频率处存在频谱功率。因此,通过两种独立的空间大地测量技术可以直接和间接地检测到FES2004海洋潮汐模型中的缺陷。通过仿真,发现GRACE未建模S_2潮汐信号的导纳(在GRACE时间序列中的杂散长波输出信号的幅度与未建模周期信号的幅度之比)具有161天的周期,全球平均水平接近100%,尽管空间差异很大。在澳大利亚西北部的布鲁姆地区,在垂直GPS时间序列中将GATL与未建模的S_2潮汐亚日信号进行比较,表明其导纳率为110-130%。

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