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DOI10.3390/rs11070744
An Attempt to Observe Vertical Land Motion along the Norwegian Coast by CryoSat-2 and Tide Gauges
Idzanovic, Martina1; Gerlach, Christian1,2; Breili, Kristian1,3; Andersen, Ole Baltazar4
发表日期2019
ISSN2072-4292
卷号11期号:7
英文摘要

Present-day climate-change-related ice-melting induces elastic glacial isostatic adjustment (GIA) effects, while paleo-GIA effects describe the ongoing viscous response to the melting of late-Pleistocene ice sheets. The unloading initiated an uplift of the crust close to the centers of former ice sheets. Today, vertical land motion (VLM) rates in Fennoscandia reach values up to around 10 mm/year and are dominated by GIA. Uplift signals from GIA can be computed by solving the sea-level equation (SLE). All three quantities can also be determined from geodetic observations: relative sea-level variations are observed by means of tide gauges, while rates of absolute sea-level change can be observed by satellite altimetry; rates of VLM can be determined by GPS (Global Positioning System). Based on the SLE, can be derived by combining sea-surface measurements from satellite altimetry and relative sea-level records from tide gauges. In the present study, we have combined 7.5 years of CryoSat-2 satellite altimetry and tide-gauge data to estimate linear VLM rates at 20 tide gauges along the Norwegian coast. Thereby, we made use of monthly averaged tide-gauge data from PSMSL (Permanent Service for Mean Sea Level) and a high-frequency tide-gauge data set with 10-min sampling rate from NMA (Norwegian Mapping Authority). To validate our VLM estimates, we have compared them with the independent semi-empirical land-uplift model NKG2016LU_abs for the Nordic-Baltic region, which is based on GPS, levelling, and geodynamical modeling. Estimated VLM rates from 1 Hz CryoSat-2 and high-frequency tide-gauge data reflect well the amplitude of coastal VLM as provided by NKG2016LU_abs. We find a coastal average of 2.4 mm/year (average over all tide gauges), while NKG2016LU_abs suggests 2.8 mm/year; the spatial correlation is 0.58.


WOS研究方向Remote Sensing
来源期刊REMOTE SENSING
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/95295
作者单位1.Norwegian Univ Life Sci NMBU, Fac Sci & Technol, POB 5003, N-1432 As, Norway;
2.Bavarian Acad Sci & Humanities BAdW, Geodesy & Glaciol, D-80539 Munich, Germany;
3.NMA, N-3507 Honefoss, Norway;
4.Tech Univ Denmark, DTU Space, DK-2800 Lyngby, Denmark
推荐引用方式
GB/T 7714
Idzanovic, Martina,Gerlach, Christian,Breili, Kristian,et al. An Attempt to Observe Vertical Land Motion along the Norwegian Coast by CryoSat-2 and Tide Gauges[J],2019,11(7).
APA Idzanovic, Martina,Gerlach, Christian,Breili, Kristian,&Andersen, Ole Baltazar.(2019).An Attempt to Observe Vertical Land Motion along the Norwegian Coast by CryoSat-2 and Tide Gauges.REMOTE SENSING,11(7).
MLA Idzanovic, Martina,et al."An Attempt to Observe Vertical Land Motion along the Norwegian Coast by CryoSat-2 and Tide Gauges".REMOTE SENSING 11.7(2019).
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