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首页> 外文期刊>Journal of geodynamics >Vertical crustal motions from differential tide gauge observations and satellite altimetry in southern Italy
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Vertical crustal motions from differential tide gauge observations and satellite altimetry in southern Italy

机译:来自潮汐计观测和意大利南部卫星测高的垂直地壳运动

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Our goal is to determine vertical crustal movement rates from tide gauge and satellite altimetry measurements. Tide gauges measure sea level, but as they are fixed to the crust, they sense both sea surface height variations and vertical crustal movements. The differential sea level rates of sufficiently nearby stations are a good means to determine differential crustal movement rates, when sea level height variations can be assumed to be homogeneous. Satellite altimetric measurements determine sea surface height variations directly and can be used to separate the crustal signal from the sea surface height variations in tide gauge measurements. The correction of the tide gauge sea level rates for the sea surface height contribution requires collocation of the satellite pass and the tide gauge station. We show that even if this is not the case, the satellite altimetric observations enable correction of differential tide gauge rates for the effects of sea surface rate inhomogeneities. We apply the methodology to an area of broad scientific interest, due to its high seismic risk and its location as standpoint for a proposed major bridge connecting Sicily to the Italian mainland. We find that the Southern Calabria and the eastern Sicily tide gauges have a deficit in sea level increase of 1-2 mm/yr with respect to the north western Sicilian tide gauge. The satellite altimetric observations show that this differential movement must be caused by a tectonic component, because the sea surface rates are higher offshore eastern Sicily compared to offshore western Sicily. The satellite altimetric rates show that the sea surface rates are inhomogeneous in the Mediterranean and have larger amplitudes as we move away from the coast than immediately offshore. Our technique can be applied to any part of the world where tide gauge observations are available, because satellite altimetric observations are global.
机译:我们的目标是根据潮汐仪和卫星测高仪的测量结果确定垂直地壳运动速率。潮汐仪测量海平面,但是当它们固定在地壳上时,它们既可以感知海平面高度的变化,也可以感知地壳的垂直运动。当可以假定海平面高度变化是均匀的时,足够近的站的海平面差异率是确定地壳移动差异率的好方法。卫星高度测量直接确定海平面高度的变化,并可以在潮汐仪测量中将地壳信号与海平面高度的变化分开。对于海面高度贡献的潮汐计海平面速率的校正需要卫星通行证和潮汐计站的搭配。我们表明,即使不是这种情况,卫星高空观测也能校正潮汐表压差率对海面率不均匀性的影响。由于该方法具有很高的地震风险,并且其位置可作为拟议中的连接西西里岛和意大利大陆的主要桥梁的立场,因此,我们将该方法应用于具有广泛科学兴趣的领域。我们发现,相对于西西里西北部的潮汐计,南部卡拉布里亚和西西里岛的潮汐计的海平面上升赤字为1-2毫米/年。卫星高空观测表明,这种差异运动必定是由构造成分引起的,因为西西里东部的海面速率高于西西里西部的海面速率。卫星测高率表明,在地中海地区,海面速率是不均匀的,并且当我们从海岸移开时,其波幅要比在近海时大。由于卫星高空观测是全球性的,因此我们的技术可以应用于可以使用潮汐计观测的世界任何地方。

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