Description

As fire weather conditions worsen, bushfires can exhibit dynamic modes of propagation, which can lead to rapid escalation, loss of containment, deterioration of firefighter and public safety and extreme bushfire development. Understanding the fundamental processes that result in dynamic bushfire behaviour and propagation is therefore a critical area of enquiry. This project will combine computational modelling with state-of-the-art wildfire observation to develop scientifically rigorous dynamic fire propagation models that integrate with fire safety and risk management systems.

Desired background

BSc in mathematics, physics, meteorology, BEng (mech), or equivalent preferred. Masters by research or practical experience is an asset. The successful applicant would need to meet the Australian Government H1 or H2A standards and UNSW entry standards.

School

School of Science, UNSW Canberra

Research Area

Bushfire

Program Code

1881 | 2921