Journal article
A model for assessing water quality risk in catchments prone to wildfire
C Langhans, HG Smith, DMO Chong, P Nyman, PNJ Lane, GJ Sheridan
Journal of Hydrology | ELSEVIER SCIENCE BV | Published : 2016
Abstract
Post-fire debris flows can have erosion rates up to three orders of magnitude higher than background rates. They are major sources of fine suspended sediment, which is critical to the safety of water supply from forested catchments. Fire can cover parts or all of these large catchments and burn severity is often heterogeneous. The probability of spatial and temporal overlap of fire disturbance and rainfall events, and the susceptibility of hillslopes to severe erosion determine the risk to water quality. Here we present a model to calculate recurrence intervals of high magnitude sediment delivery from runoff-generated debris flows to a reservoir in a large catchment (>100km2) accounting for ..
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Funding Acknowledgements
The authors would like to acknowledge Craig Mason and Kevin Tolhurst for their contribution to the fire model development, Stuart Vaughan for coding, and Melbourne Water for funding.