Tianfeng Wan’s research while affiliated with China University of Geosciences (Beijing) and other places

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Publications (1)


Knickpoint series of gullies along the Luoyunshan Piedmont and its relation with fault activity since late Pleistocene
  • Article

September 2016

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146 Reads

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16 Citations

Geomorphology

Changbin Sun

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Tianfeng Wan

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Xinsheng Xie

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[...]

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Kuan Liang

The authors surveyed the longitudinal profiles of 28 gullies across the Luoyunshan Piedmont fault (LPF) by differential GPS and dating of sediments well preserved in the typical terraces and obtained 6-level knickpoint series of the gullies along the Luoyunshan Piedmont. The authors compared it with previous studies on the paleo-earthquakes of the LPF revealed by trenches and found that the paleo-earthquake events from knickpoint and trench studies are in good agreement in terms of the time of occurrence and vertical displacement of the fault. It shows studying the paleo-earthquake events of the fault by knickpoint series is feasible. At last, the authors established a more complete paleo-earthquake sequence of the LPF supported by geomorphologic and sedimentary evidence, i.e., six paleo-earthquake events happened on the LPF from about 28,000 years ago; the LPF has the characteristic of quasi-periodic recurrence and the average recurrence interval is 4585 years. The vertical displacement of the paleo-earthquake events is 2.4–3.0 m; according to the empirical equations between co-seismic displacement and earthquake magnitude the magnitude of these events is Ms 7.0–7.5. This study aims to complement and improve the traditional trenching method, provide theoretical and methodological support for the research of active tectonics, and contribute important information for the seismic hazard assessment of the densely populated Linfen area.

Citations (1)


... Usually, they are connected to long-term changes in rock resistance, erosion, or faulting, among other geological processes. Understanding the formation and evolution of knickpoints and knickzones in river systems is crucial because they are features that affect base level variation, tectonic upliftment, lithological differences, volcanic activity, and glacier retreat, among other factors (Lewis 1945;Mueller 1968;Zaprowski et al. 2001;García et al. 2004;Hayakawa and Oguchi 2006;Sun et al. 2016;Kudnar et al. 2022). In contrast to the downstream segment of river, the upstream section exhibits a succession of fractures and knickzones that show active erosion and significant lithological influence on the channel. ...

Reference:

Morphometric and longitudinal profile analysis in the Cauvery River basin: a geospatial approach
Knickpoint series of gullies along the Luoyunshan Piedmont and its relation with fault activity since late Pleistocene
  • Citing Article
  • September 2016

Geomorphology