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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Mapping regional land displacements in the Venice coastland by an integrated monitoring system
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Mapping regional land displacements in the Venice coastland by an integrated monitoring system

机译:通过综合监测系统绘制威尼斯沿海地区的土地流失图

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An original integrated monitoring method is designed to infer an accurate and reliable figure of regional land displacements in coastal areas where the presence of internal waters, wetlands, farmlands, urban and industrial centers usually reduces the efficiency of single ground-based and satellite-based measuring techniques. Five different methods, i.e. spirit leveling, Differential Global Positioning System (DGPS), Continuous GPS (CGPS), Interferometric Synthetic Aperture Radar (InSAR), and Interferometric Point Target Analysis (IPTA), are integrated into a Subsidence Integrated Monitoring System (SIMS) to overcome the limits characterizing each technique. The SIMS has been used over the past decade to provide a new image of the land displacements in the Venice region. The result exhibits a resolution never obtained before. The central lagoon, including the city of Venice, shows a general stability while the northern and southern lagoon extremities and their related catchment sectors sink with serious rates averaging 3 to 5 mm/year. The sinking rates increase up to 10-15 mm/year in the coastland south of the lagoon. Relatively small uplifts (less than 1 mm/year) are observed at the Alpine foothills and in a wide area comprised between the Euganean Hills and the lagoon. The observed land displacements have been associated to the geological features of the study region, i.e. tectonics, seismicity, differential consolidation of the middle-upper Pleistocene and Holocene deposits, and to anthropogenic activities, such as land reclamation and groundwater withdrawal.
机译:一种原始的综合监测方法旨在推断出沿海地区区域土地流失的准确和可靠数字,在沿海地区,由于内部水域,湿地,农田,城市和工业中心的存在,通常会降低基于地面和基于卫星的测量的效率技术。五种不同的方法,即水平仪,差分全球定位系统(DGPS),连续GPS(CGPS),干涉合成孔径雷达(InSAR)和干涉点目标分析(IPTA),已集成到沉降综合监控系统(SIMS)中克服每种技术的局限性。 SIMS在过去十年中一直被用来提供威尼斯地区土地置换的新图像。结果显示出前所未有的分辨率。包括威尼斯市在内的中部泻湖显示出总体稳定,而北部和南部泻湖末端及其相关集水区则以每年3至5毫米的严重速度下沉。在泻湖以南的沿海地区,下沉率提高到每年10-15毫米/年。在阿尔卑斯山丘陵地带和Euganean山丘与泻湖之间的广阔区域中,观察到相对较小的隆起(小于1毫米/年)。观测到的土地位移与研究区域的地质特征有关,即构造,地震活动性,中上更新世和全新世沉积的差异固结,以及人为活动,例如开垦土地和抽取地下水。

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