Inversion kinematics at deep-seated gravity slope deformations revealed by trenching techniques
We compare data from three deep-seated gravitational slope deformations (DSGSDs) where palaeoseismological techniques were applied in artificial trenches. At all trenches, located in metamorphic rocks of the Italian Alps, there is evidence of extensional deformation given by normal movements along s...
| 出版年: | Natural Hazards and Earth System Sciences |
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| 主要な著者: | , |
| フォーマット: | 論文 |
| 言語: | 英語 |
| 出版事項: |
Copernicus Publications
2016-03-01
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| オンライン・アクセス: | http://www.nat-hazards-earth-syst-sci.net/16/663/2016/nhess-16-663-2016.pdf |
| 要約: | We compare data from three deep-seated gravitational slope deformations (DSGSDs)
where palaeoseismological techniques were applied in artificial
trenches. At all trenches, located in metamorphic rocks of the Italian Alps,
there is evidence of extensional deformation given by normal movements along
slip planes dipping downhill or uphill, and/or fissures, as expected in
gravitational failure. However, we document and illustrate – with the aid of
trenching – evidence of reverse movements. The reverse slips occurred
mostly along the same planes along which normal slip occurred, and they produced
drag folds in unconsolidated Holocene sediments as well as the
superimposition of substrate rocks on Holocene sediments. The studied
trenches indicate that reverse slip might occur not only at the toe portions
of DSGSDs but also in their central-upper portions. When the age
relationships between the two deformation kinematics can be determined, they
clearly indicate that reverse slips postdate normal ones. Our data suggest
that, during the development of long-lived DSGSDs, inversion kinematics may
occur in different sectors of the unstable rock mass. The inversion is
interpreted as due either to locking of the frontal blocks of a DSGSD or to
the relative decrease in the rate of downward movement in the frontal blocks
with respect to the rear blocks. |
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| ISSN: | 1561-8633 1684-9981 |
