Exploring new methods to analyse spatial impact distributions on debris‐flow fans using data from south‐western British Columbia

Author:

Zubrycky Sophia12ORCID,Mitchell Andrew1ORCID,McDougall Scott1ORCID,Strouth Alex1ORCID,Clague John J.3ORCID,Menounos Brian4ORCID

Affiliation:

1. Department of Earth, Ocean and Atmospheric Sciences The University of British Columbia Vancouver Canada

2. BGC Engineering Inc. Vancouver Canada

3. Department of Earth Sciences Simon Fraser University Burnaby Canada

4. Geography Program and Natural Resources and Environmental Studies Institute University of Northern British Columbia Prince George Canada

Funder

Canada Foundation for Innovation

Canada Excellence Research Chairs, Government of Canada

British Columbia Knowledge Development Fund

Canadian Network for Research and Innovation in Machining Technology, Natural Sciences and Engineering Research Council of Canada

Publisher

Wiley

Subject

Earth and Planetary Sciences (miscellaneous),Earth-Surface Processes,Geography, Planning and Development

Reference64 articles.

1. Two methodologies to calibrate landslide runout models

2. Detection of millimetric deformation using a terrestrial laser scanner: experiment and application to a rockfall event

3. Predicting deposition of debris flows in mountain channels

4. Prediction of debris flow inundation areas using empirical mobility relationships

5. BGC Engineering Inc. (2015).Catiline Creek Debris‐Flow Hazard and Risk Assessment. Technical Report Project No. 1358001.https://www.slrd.bc.ca/emergency-program/hazard-reports-information/local-hazard-reports/catiline-creek-debris-flow-hazard

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