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Current trends in land subsidence of the North-Central part of Poland using DInSAR technique

机译:利用DINSAR技术的波兰北部地区土地沉降趋势

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The gradual change in the Earth’s surface elevation is known as land subsidence and it happens due to natural causes related to geological activities, such as sinkholes, or induced causes related to human activities, such as mining activities, or both. The historical records of land subsidence show that it is mainly related to human activities with damages of more than billions of dollars every year. This paper shows the current trends of land subsidence case of the North-Central part of Poland using the Differential Interferometric Satellite Aperture Radar (DInSAR) technique. That region is known as the extension of the oil and gas reservoir of the Baltic Sea and one of the most populated areas in Poland. This technique uses SAR data images from the sentinel-1A mission of the same area, taken on April 25, 2018 and April 26, 2020, in order to measure the surface changes between these time intervals. Thus, a two-year land subsidence map of that region has been created, with maximum subsidence of -85mm. There is no significant subsidence in the production area, but information on the population supports the alleged reasons for such subsidence, namely the infrastructure growth and the need for water resources. Besides, most of the occurred subsidence in the concerned area is concentrated in big cities such as Gdansk and Gdynia. Such result is very important for policymakers, especially concerning the sustainable development goals
机译:地球表面高度的逐渐变化被称为土地沉降,并且由于与地质活动(如下沉孔)相关的自然原因,或与人类活动相关的原因,例如采矿活动,或两者。土地沉降的历史记录表明,它主要与人类活动有关每年超过数十亿美元的损害。本文介绍了使用差动干涉卫星透射雷达(DINSAR)技术波兰北部部分地区地区居壳的当前趋势。该地区被称为波罗的海的石油和天然气藏的延伸和波兰最具人口稠密的地区之一。该技术使用来自同一区域的Sentinel-1A任务的SAR数据图像,于2018年4月25日和4月26日,2020年4月26日,以便测量这些时间间隔之间的表面变化。因此,已经创建了该地区的两年土地沉降地图,最大沉降为-85mm。生产区没有巨大的沉降,但有关人口的信息支持据称的沉降,即基础设施的增长和水资源的需求。此外,有关领域的大部分发生的沉降集中在格但斯克和格德尼亚等大城市中。这些结果对于政策制定者来说非常重要,特别是关于可持续发展目标

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