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Monitoring of urban subsidence in coastal cities: Case studies Vancouver and Seattle

机译:监测沿海城市城市沉降:案例研究温哥华和西雅图

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The advanced processing methodology is presented for extracting information from earth observation data. Using imagery from various Synthetic Aperture Radar (SAR) satellites and Multidimensional Small Baseline Subset Differential Interferometric SAR (MSBAS-DInSAR) processing methodology we observed ground subsidence in Vancouver (British Columbia, Canada) and Seattle (Washington, USA). In Vancouver, subsidence with rate of up to 2 cm/year was detected during 1995-2012 over a broad area, including the Vancouver International Airport. In Seattle, subsidence with rate of up to 3 cm/ year was detected during 2012-2015. Between August 2014 and August 2015, unusually fast subsidence occurred beneath the city center. This subsidence is caused mainly by human activities, such as construction, urban infrastructure development and groundwater extraction, but also by natural processes, such as consolidation of sediments. Located in coastal areas, these cities may become affected by flooding if ground level subsides below the sea level or due to storm surge. The risk of flooding increases as the sea level continues to rise due to the climate change. The advanced image processing methodology of earth observation data described here allows near real-time monitoring of ground subsidence with high spatial resolution and high precision, therefore increasing level of preparedness and mitigating risk.
机译:提出了高级处理方法,用于从地球观察数据中提取信息。使用来自各种合成孔径雷达(SAR)卫星的图像和多维小基线子集差动干涉SAR(MSBAS-DINSAR)处理方法,我们观察了温哥华(不列颠哥伦比亚省,加拿大)和西雅图(华盛顿,美国)的地面沉降。在温哥华,在1995 - 2012年期间,在包括温哥华国际机场在内的广大地区,检测到高达2厘米/年的沉降。在西雅图,在2012-2015期间检测到余量高达3厘米/年。 2014年8月至2015年8月期间,在市中心下发生异常快速的沉降。该沉降主要是由人类活动引起的,如建筑,城市基础设施开发和地下水提取,也是通过自然过程,如沉积物的整合。在沿海地区,这些城市可能会受到洪水的影响,如果地面水平低于海平面或因风暴浪涌而受到洪水。由于气候变化,海拔潜水的风险随着海拔持续上涨。这里描述的地球观测数据的高级图像处理方法允许具有高空间分辨率和高精度的地面沉降的近实时监测,从而提高准备和减轻风险水平。

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