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This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License
Article
Analysis and Prediction of Risks From Rockfall in the Huancavelica City
Author(s)
Iván Ayala Bizarro, Victor Paitan Sedano, Edman Ventura Sullca, Marco Lopez Barrantes, Hugo Lujan Jeri, Abdon Olivera Quintanilla, Jorge Ortega Vargas and Carlos Gaspar Paco
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DOI:10.17265/2162-5298/2019.05.003
Affiliation(s)
Department of Civil Engineering, National University of Huancavelica, Huancavelica 09001, Peru
ABSTRACT
This research refers to the analysis and prediction of rockfall risk,
whose objective is to determine the results of the validation of the model and
application of modeling in the Rocfall Software, in this way to prepare the map
of risk areas. Likewise, the general problem was identified: What are the
results of the analysis and prediction of risks from rockfall in the city of
Huancavelica? To respond to the problem posed, the following steps were carried
out: obtaining field information with Drone equipment and using photogrammetric
processes the topography of the study area was obtained, identification of
unstable areas, trajectories, traces of the previously occurred landslides and
five geomechanical stations. The specific weight of eight rock samples in the
laboratory of the National University of Huancavelica was also calculated,
which served to obtain the weight of the large-scale rock blocks. In addition,
the normal and tangential restitution coefficients were calibrated, that is,
field trials. Once the data were obtained, modeling
was carried out by applying the Rocfall software, whose results of ten
trajectories were: final distance reached, bounce height, kinetic energy and
translational speed. With these values, risk maps have been prepared, taking
into account the areas of housing vulnerability in the city of Huancavelica.
Finally, it is proposed to mitigate these risks of rockfall, with dynamic
barriers, which is important for the security of housing in the analysis
sectors.
KEYWORDS
Risk prediction, rockfall, trajectory simulation.
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