Incorporating Stochastic Wind Vectors in Wildfire Spread Prediction

Author:

Masoudian Sahar1ORCID,Sharples Jason1ORCID,Jovanoski Zlatko1ORCID,Towers Isaac1ORCID,Watt Simon1ORCID

Affiliation:

1. School of Science, University of New South Wales, Canberra, ACT 2612, Australia

Abstract

The stochastic nature of environmental factors that govern the behavior of fire, such as wind and fuel, exposes wildfire modeling to a degree of uncertainty. In order to produce more realistic wildfire predictions, it is, therefore, necessary to incorporate these uncertainties within wildfire models in a way that reflects the influence of environmental stochasticity on wildfire propagation. Otherwise, the risks of the potential danger of a given wildfire may be under-represented. Specifically, environmental stochasticity in the form of wind variability results in considerable uncertainty in the output of fire spread models. Here, we consider two stochastic wind models and their implementation in the spark fire simulator framework to capture the environmental uncertainty related to wind variability. The results are compared with the output from purely deterministic wildfire spread models and are discussed in the context of the potential ramifications for wildfire risk management.

Funder

niversity of New South Wales Canberra International Student Scholarship

Publisher

MDPI AG

Subject

Atmospheric Science,Environmental Science (miscellaneous)

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