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首页> 外文期刊>Landslides >Geometric and kinematic characterization of landslides affecting urban areas: the Lungro case study (Calabria, Southern Italy)
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Geometric and kinematic characterization of landslides affecting urban areas: the Lungro case study (Calabria, Southern Italy)

机译:影响城市地区山体滑坡的几何和运动学特征:Lungro案例研究(Calabria,Italy南部)

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摘要

The geometric and kinematic characterization of landslides affecting urban areas is a challenging goal that is routinely pursued via geological/geomorphological method and monitoring of ground displacements achieved by geotechnical and, more recently, advanced differential interferometric synthetic aperture radar (A-DInSAR) data. Although the integration of all the above-mentioned methods should be planned a priori to be more effective, datasets resulting from the independent use of these different methods are commonly available, thus making crucial the need for their standardized a posteriori integration. In this regard, the present paper aims to provide a contribution by introducing a procedure that, taking into account the specific limits of geological/geomorphological analyses and deep/surface ground displacement monitoring via geotechnical and A-DInSAR data, allows the a posteriori integration of the results by exploiting their complementarity for landslide characterization. The approach was tested in the urban area of Lungro village (Calabria region, southern Italy), which is characterized by complex geological/geomorphological settings, widespread landslides and peculiar urban fabric. In spite of the different level of information preliminarily available for each landslide as result of the independent use of the three methods, the implementation of the proposed procedure allowed a better understanding and typifying of the geometry and kinematics of 50 landslides. This provided part of the essential background for geotechnical landslide models to be used for slope stability analysis within landslide risk mitigation strategies.
机译:影响城市地区的滑坡的几何和运动学表征是一个具有挑战性的目标,通过地质/地貌方法和监测岩土工程,最近,先前,先进的微分干涉性合成孔径雷达(A-DINSAR)数据来监测地面位移的监测。虽然应该计划所有上述方法的集成,但是经过更有效的,这是由独立使用这些不同方法产生的数据集通常可用,从而对其标准化的后验集成的需要至关重要。在这方面,本文旨在通过引入通过岩土和岩石数据的地质/地貌分析和深/地面分析监测的具体限制来提供贡献,允许后验通过利用坡滑障碍表征的互补性来实现结果。该方法在Lungro村(Calabria地区,南部)的城市地区进行了测试,其特点是复杂的地质/地貌设置,广泛的山体滑坡和特殊的城市面料。尽管根据三种方法的独立使用,但每个滑坡预先可用的信息水平不同,所提出的程序的实施允许更好地理解和逐步到50个山体滑坡的几何和运动学。这为岩土滑坡模型提供了部分基本背景,用于在滑坡风险缓解策略中用于边坡稳定性分析。

著录项

  • 来源
    《Landslides》 |2017年第1期|共18页
  • 作者单位

    Natl Res Council Italy Res Inst Geohydrol Protect Via Cavour 4-6 I-87030 Cosenza Italy;

    Univ Salerno Dept Civil Engn Via Giovanni Paolo 2 132 I-84084 Fisciano SA Italy;

    Natl Res Council Italy Res Inst Geohydrol Protect Via Cavour 4-6 I-87030 Cosenza Italy;

    Natl Res Council Italy Res Inst Geohydrol Protect Via Cavour 4-6 I-87030 Cosenza Italy;

    Inst Electromagnet Sensing Environm IREA CNR Via Diocleziano 328 I-80124 Naples Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 崩塌;
  • 关键词

    Landslides; Monitoring; A-DInSAR; Kinematics; Typifying;

    机译:山体滑坡;监测;a-dinsar;运动学;典型;

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