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An experiment to test satellite radar interferometry-observed geodetic ties to remotely monitor vertical land motion at tide gauges

机译:试验卫星雷达干涉测量观测到的大地型关系,远程监测潮汐仪的垂直陆运动

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摘要

The nature and linearity of vertical land motion (VLM) impacting the global sea level record from tide gauges is not well known, but remains of importance to understand long-term changes to sea level. Local surveys are required to directly measure VLM at tide gauges relative to a global reference frame, but this is limited by the lack of differential VLM measurements between tide gauges and continuously operating GPS (cGPS) stations that are not co-located, i.e., fixed to the tide gauge structure. We present results from an experiment using satellite radar interferometry (InSAR) scenes acquired from the TerraSAR-X satellite mission to test whether InSAR could replace repeat geodetic levelling as a 'geodetic tie' between cGPS stations and tide gauges. Comparisons are made among TerraSAR-X (TSX), cGPS and tide gauge minus altimetry VLM estimates for the Hillarys and Fremantle tide gauges (Perth, Western Australia), which are used as test sites for this method. The results suggest agreement between differential TSX and altimetry minus tide gauge VLM rates, but systematic offsets among the absolute/geocentric rates where the TSX is referenced to IGS08 at the PERT cGPS. The TerraSAR-X VLM at the Fremantle tide gauge for the period 7 October 2012 to 7 October 2017 is + 0.45 +/- 0.40 mm/yr (referenced to IGS08 at PERT cGPS), although this should be treated cautiously over this short period, and because VLM at Fremantle and Hillarys appears to be non-linear over time. We infer from this that the uncertainties in TerraSARX differential VLM rates are comparable to those from the highest quality repeat levelling, although the uncertainty approaches 1 mm/yr if the reference point uncertainty of the TSX and cGPS is considered when transformed to a terrestrial reference frame.
机译:垂直陆运动的性质和线性(VLM)影响潮流仪表的全球海平面记录并不众所周知,但要理解海平面的长期变化的重要性仍然重要。局部调查是相对于全局参考帧的潮汐仪直接测量VLM,但这受到潮汐仪之间缺乏差分VLM测量的限制,并且不连贯的,即固定的到潮汐仪表结构。我们使用从Terrasar-X卫星使命中获取的卫星雷达干涉测量(INSAR)场景来测试实验的结果,以测试INSAR是否可以将重复的大地测量仪替换为CGPS站和潮汐仪之间的“大地电系数”。在Terrasar-X(TSX),CGPS和Tide Cauge的比较和潮汐仪表中的比较是Hillarys和Fremantle Tide Gauges(珀斯,西澳大利亚)的估计,其用作这种方法的测试网站。结果表明差动TSX和Altimetry的潮速VLM速率之间的协议,但是在Pert CGPS的IGS08引用TSX的绝对/地理速率下系统的偏移。 2012年10月7日至10月7日的Fremantle Tide Cauge的Terrasar-X VLM是+ 0.45 +/- 0.40 mm / Yr(参考Pert CGPS的IGS08),尽管这应该在这段短期内谨慎对待,因为在Fremantle和Hillary的VLM似乎是非线性的。我们从此推断,Terrasarx差分VLM率的不确定性与来自最高质量重复调平的不确定性相当,尽管如果在转换到地面参考框架时考虑了TSX和CGP的参考点不确定性,则不确定性接近1 mm / yr 。

著录项

  • 来源
    《Global and planetary change》 |2020年第1期|103084.1-103084.10|共10页
  • 作者单位

    Curtin Univ Sch Earth & Planetary Sci GPO Box U1987 Perth WA 6845 Australia;

    Natl Oceanog Ctr Joseph Proudman Bldg 6 Brownlow St Liverpool L3 5DA Merseyside England;

    Natl Oceanog Ctr Joseph Proudman Bldg 6 Brownlow St Liverpool L3 5DA Merseyside England|Univ Liverpool Sch Environm Sci Liverpool L69 3GP Merseyside England;

    Univ La Rochelle Littoral Environm & Soc LIENS Natl Ctr Sci Res CNRS 2 Rue Olympe de Gouges F-17000 La Rochelle France;

    Curtin Univ Sch Earth & Planetary Sci GPO Box U1987 Perth WA 6845 Australia;

    Natl Oceanog Ctr Joseph Proudman Bldg 6 Brownlow St Liverpool L3 5DA Merseyside England;

    Curtin Univ Sch Earth & Planetary Sci GPO Box U1987 Perth WA 6845 Australia|CSIRO Astron & Space Sci Ctr Earth Observat 26 Dick Perry Ave Kensington WA 6155 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    InSAR; Sea level change; Vertical land motion; Tide gauges;

    机译:insar;海平面变化;垂直陆战;潮汐仪表;

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