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Beijing subway tunnelings and high-speed railway subsidence monitoring with PSInSAR and TerraSAR-X data

机译:利用PSInSAR和TerraSAR-X数据监测北京地铁隧道和高铁沉降

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Tremendous underground exploitation as subway tunneling, functional facilities excavation in inner-city environments caused potential damages to buildings and bridges over the construction zone. PSInSAR technique and high resolution SAR data provides a powerful tool for slightly surface deformation in recent years. Till now, it is time to use PSInSAR as an operational and mature technique for geodesy and geodetic purposes. In this work we presented the monitoring of subsidence over subway tunnels and along high speed railway in Beijing city by interferometric time series analysis based on nearly 46 scenes of TerraSAR-X data over the past 4 years. The resulted velocity map described the extent and magnitude of subsidence along the subway lines due to the different ground excavation method. It demonstrated that the total subsidence of PSs over the tunnels caused by open-cutting method is up to 70-80 mm and that caused by tunneling method is only 15-25mm in the full construction cycle of subway tunnels. The subsidence extent is distinguished different relying on the excavation method as well as the load of ground buildings. Under the same condition the subsidence over the built up area is more significant than that over the general area.
机译:大量地下开采活动,例如地铁隧道,内城区环境中的功能设施开挖,对建筑区域内的建筑物和桥梁造成了潜在的破坏。 PSInSAR技术和高分辨率SAR数据为近年来的轻微表面变形提供了强大的工具。到目前为止,是时候将PSInSAR用作用于大地测量和大地测量的操作性和成熟技术。在这项工作中,我们基于过去4年中近46个TerraSAR-X数据的场景,通过干涉式时间序列分析,提出了对北京地铁隧道和高速铁路沿线沉降的监测。所得的速度图描述了由于不同的地面开挖方法而导致沿地铁线沉降的程度和程度。结果表明,在地铁隧道的整个施工周期中,明挖法引起的隧道PS沉降总量可达70-80 mm,而隧道法引起的PS沉降仅为15-25mm。根据开挖方法以及地面建筑物的负荷,将沉降程度区分开来。在相同条件下,建筑区域的沉降比整个区域的沉降更重要。

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