首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >A new method to assess long-term sea-bottom vertical displacement in shallow water using a bottom pressure sensor: Application to Campi Flegrei, Southern Italy
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A new method to assess long-term sea-bottom vertical displacement in shallow water using a bottom pressure sensor: Application to Campi Flegrei, Southern Italy

机译:一种使用底部压力传感器评估浅海中长期海底垂直位移的新方法:在意大利南部的Campi Flegrei上的应用

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摘要

We present a new methodology using bottom pressure recorder (BPR) measurements in conjunction with sea level, water column, and barometric data to assess the long-term vertical seafloor deformation to a few centimeters accuracy in shallow water environments. The method helps to remove the apparent vertical displacement on the order of tens of centimeters caused by the BPR instrumental drift and by seawater density variations. We have applied the method to the data acquired in 2011 by a BPR deployed at 96m depth in the marine sector of the Campi Flegrei Caldera, during a seafloor uplift episode of a few centimeters amplitude, lasted for several months. The method detected a vertical uplift of the caldera of 2.5 +/- 1.3 cm achieving an unprecedented level of precision in the measurement of the submarine vertical deformation in shallow water. The estimated vertical deformation at the BPR also compares favorably with data acquired by a land-based GPS station located at the same distance from the maximum of the modeled deformation field. While BPR measurements are commonly performed in deep waters, where the oceanic noise is relatively low, and in areas with rapid, large-amplitude vertical ground displacement, the proposed method extends the capability of estimating vertical uplifts from BPR time series to shallow waters and to slow deformation processes.
机译:我们提出了一种使用底部压力记录仪(BPR)的测量值与海平面,水柱和气压数据相结合的新方法,以评估浅水环境中长期垂直海底变形到几厘米的精度。该方法有助于消除由BPR仪器漂移和海水密度变化引起的数十厘米的表观垂直位移。我们将这种方法应用于2011年由BPR部署在Campi Flegrei Caldera海洋区域中96m深度处获得的数据,该过程在数厘米振幅的海底隆起期间持续了几个月。该方法检测到火山口的垂直隆起为2.5 +/- 1.3厘米,从而在测量浅水中的海底垂直变形方面达到了前所未有的精度。在BPR处估计的垂直变形还可以与位于距建模变形场的最大值相同距离处的陆基GPS站获取的数据进行比较。虽然BPR测量通常在海洋噪声相对较低的深水区域以及垂直地面位移较大的快速区域进行,但该方法将估算垂直起伏的能力从BPR时间序列扩展到了浅水区域,并达到了缓慢的变形过程。

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