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GNSS measurements for ground deformations detection around offshore natural gas fields in the Northern Adriatic Region

机译:GNSS测量北亚得里亚地区近海天然气场周围的地面变形检测

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The study aims to evaluate ground deformations in a vast area characterized by the coexistence of intense anthropic activities and offshore natural gas production. Onshore subsidence can be studied by GNSS, InSAR, high precision leveling and extensometers that provide broad datasets for a fully integrated description of the phenomenon. At present, seafloor subsidence monitoring cannot be carried out by high precision leveling, and GNSS is the only reliable method, implemented by means of permanent stations installed on offshore hydrocarbon production facilities. In the Northern/Central Adriatic Sea gas production platforms, GNSS data are recorded since more than 15 years, allowing to estimate not only the average subsidence of the platform/seafloor, but also possible velocity variations due to underground fluids withdrawal. This study shows the comparison of 22 offshore GNSS permanent stations located in the study area. Raw data have been processed with two different software packages (GIPSY-OASIS and GAMIT-GLOBK) based on different approaches and considering different boundary conditions of geodetic and/or modeling nature. Main results point out the high accuracy of the GNSS technology considering also the impact of data processing. Finally, at selected permanent stations we also performed a comparison of results obtained by GNSS, InSAR and high precision leveling.
机译:该研究旨在评估一个巨大区域的地面变形,其特征在于强烈的人类活动和海上天然气生产的共存。通过GNS,INSAR,高精度水平和突出器可以研究陆上沉降,以提供广泛的数据集,以满足现象的完全综合描述。目前,海底沉降监测不能通过高精度水平进行,而GNSS是唯一通过安装在近海碳氢化合物生产设施上的永久性车站的可靠方法。在北部/中央亚得里亚海天然气生产平台中,GNSS数据被记录自15年以上,不仅估计平台/海底的平均沉降,而且也可能由于地下流体撤离而可能的速度变化。本研究显示了位于研究区的22个海上GNSS永久站的比较。基于不同方法,并考虑了大地测量和/或建模性质的不同边界条件,已经用两种不同的软件包(GIPSY-OASIS和GAMIT-GLOBK)处理了原始数据。主要结果指出了GNSS技术的高精度,考虑到数据处理的影响。最后,在所选的永久站,我们还执行了GNSS,Insar和高精度水平获得的结果的比较。

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