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Dive into the research topics where B. Quan Luna is active.

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Featured researches published by B. Quan Luna.


Archive | 2013

Analysis and Uncertainty Quantification of Dynamic Run-Out Model Parameters for Landslides

B. Quan Luna; Jose Cepeda; A. Stumpf; C.J. van Westen; Alexandre Remaître; J.P. Malet; T. W. J. van Asch

The main goals of landslide run-out modeling should be the assessment of future landslide activity with a range of potential scenarios, and the information of the local populations about the hazards in order to enable informed response measures. In recent times, numerical dynamic run-out models have been developed which can assess the velocity and extent of motion of rapid landslides such as debris flows and avalanches, flow slides and rock avalanches. These models are physically-based and solved numerically, simulating the movement of the flow using constitutive laws of fluid mechanics in one or two dimensions. Resistance parameters and release volumes are crucial for a realistic simulation of the landslide behavior, whereas it is generally difficult to measure them directly in the field. Uncertainties in the parameterization of these models yield many uncertainties concerning their frequency values, which must be addressed in a proper risk assessment. Based on the probability density functions of release volumes and friction coefficients of a given landslide model, this work aims to systematically quantify the uncertainties in the run-out modeling. The obtained distributions can be used as an input for a probabilistic methodology where the uncertainties in the release volume and friction coefficients (rheological parameters) inside the dynamic models can be addressed. This will improve the confidence of the dynamic run-out model outputs such as the distribution of deposits in the run-out area, velocities and impact pressures, important components for a risk analysis and regulatory zoning.


Natural Hazards and Earth System Sciences | 2011

The application of numerical debris flow modelling for the generation of physical vulnerability curves

B. Quan Luna; Jan Blahut; C.J. van Westen; C.J.S. Sterlacchini; Th.W.J. van Asch; Sami O. Akbas


Archive | 2010

Development of training materials on the use of geo - information for multi - hazard risk assessment in a mountainous environment

C.J. van Westen; B. Quan Luna; R.D. Vargas Franco; J.P. Malet; Thomas Glade; N. Casagli


Mountain Risks International Conference | 2010

From deterministic hazard modelling to risk and loss estimation

B. Quan Luna; C.J. van Westen; J.P. Malet; Thomas Glade; N. Casagli


Mountain Risks International Conference | 2010

A preliminary compilation of calibrated rheological parameters used in dynamic simulations of landslide run - out

B. Quan Luna; C.J. van Westen; V.G. Jetten; J.P. Malet; Thomas Glade; N. Casagli


ITC Dissertation | 2012

Dynamic numerical run-out modelling for quantitative landslide risk assessment

B. Quan Luna


Geophysical Research Abstracts | 2013

Changes in rainfall thresholds for debris flow initiation and run-out on a local and regional scale in the Wenchuan earthquake area, SW China

Th.W.J. van Asch; B. Quan Luna; Chenxiao Tang; A. van Westen; D. Alkema; X. Fan


Archive | 2012

Application of a Monte Carlo method for modeling debris flow run - out : abstract + poster

B. Quan Luna; Jose Cepeda; A. Stumpf; C.J. van Westen; J.P. Malet; Th.W.J. van Asch


Geophysical Research Abstracts (GRA) | 2012

Assessing the debris flow run-out frequency of a catchment in the French Alps using a parameterization analysis with the RAMMS numerical run-out model

Y.A. Hussin; B. Quan Luna; C.J. van Westen; M. Christen; J.P. Malet; Th.W.J. van Asch


The EGU General Assembly | 2010

Quantitative risk assessment using vulnerability functions from debris flow event reconstruction : poster.

B. Quan Luna; J. Blahut; Corrado Camera; C.J. van Westen; S. Sterlacchini; Tiziana Apuani; Sami O. Akbas

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J.P. Malet

University of Strasbourg

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J. Blahut

National Research Council

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C.J. van Westen

International Institute of Minnesota

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A. Stumpf

University of Strasbourg

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Jose Cepeda

Norwegian Geotechnical Institute

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Ilaria Poretti

University of Milano-Bicocca

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