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Integrated Monitoring of Lateral Spreading Phenomena Along the North-West Coast of the Island of Malta

机译:沿着马耳他岛西北海岸横向扩散现象的综合监测

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Abstract Landslides, and especially lateral spreading, are responsible for the main landforms observable along the north-western coast of the Island of Malta. A series of rock spreading phenomena, and associated mass movements, have been recognised in this area and the most significant cases have been investigated by means of a multi-technical approach which envisaged geomorphological survey and mapping, geophysical analyses and monitoring of displacements. The aim of the study was to define whether rock spreading phenomena are active along the investigated coastal stretch and, possibly, to determine the rate of movement of the most relevant cases. In this framework, a multidisciplinary approach was used and different techniques were tested and applied on a specific site, which was selected for the presence of an extensive rock spread phenomenon which may induce hazard conditions. The site is located at Il-Prajjet (Anchor Bay), a narrow inlet where a tourist attraction is located. Research activities have been carried out at Il-Prajjet since 2006 when a GPS network of eight benchmarks was installed. This technique was chosen because it proved to be a powerful tool in the study of similar ground deformation in coastal and mountain areas, showing high accuracy and reliability. Once GPS monitoring had showed that rock spreading was active, further techniques were applied in order to achieve an in-depth knowledge of the instability processes occurring at Il-Prajjet. The paper illustrates the results so far achieved thanks to GPS monitoring, tape extensometer measurements, SAR interferometric analyses and GPR investigations.
机译:摘要山体滑坡,特别是横向扩散,负责沿着马耳他岛西北海岸观察的主要地貌。在该地区公认,一系列岩石蔓延现象和相关的质量运动,并通过多种技术方法研究了最重要的情况,该方法设想了地貌调查和映射,地球物理分析和对位移的监测。该研究的目的是定义岩石蔓延现象是否沿着调查的沿海延伸和可能,以确定最相关病例的运动速度。在该框架中,使用多学科方法,并在特定部位上测试并施加不同的技术,该特定部位被选择用于存在广泛的岩石扩散现象,这可能会引起危险条件。该网站位于IL-Prajjet(Anchor Bay),这是一个狭窄的入口,其中旅游景点。自2006年以来,在安装了八个基准的GPS网络时,在IL-Prajjet进行了研究活动。选择了这种技术,因为它被证明是研究沿海和山区类似地面变形的强大工具,表现出高精度和可靠性。一旦GPS监测显示岩石扩展是有效的,就施加了进一步的技术,以便达到IL-Prajjet所发生的不稳定过程的深入知识。本文说明了到目前为止,由于GPS监测,磁带扩展计测量,SAR干涉计分析和GPR调查,因此实现了迄今为止实现的结果。

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