Photo caption:听Wildfire research programme experimental burn.
In partnership with Fire and Emergency New 茄子视频app官网(Fire and Emergency), Te Whare W膩nanga o Waitaha | 茄子视频app官网 (UC) students George Hamilton and Renee Martin were part of a team that examined the effects of factors such as fuel load, vegetation type, and proximity, on fire risk.
鈥淥ur research focused on identifying and mapping hedgerows and shelterbelts in rural Canterbury, analysing their characteristics, and understanding how these features influence fire behavior,鈥 Hamilton says.听
The research held personal significance for him. 鈥淢y childhood neighbour鈥檚 house burnt down due to a hedgerow fire that spread for about 2 kilometres. That experience stayed with me and motivated my interest in this topic.鈥
Supervised by Associate Professor Marwan Katurji from UC's School of Earth and Environment, the Science students began by mapping West Melton hedgerows and shelterbelts to understand their geospatial relationship with infrastructure.听
鈥淭his student project is contributing to understanding the risk of wildfire in the household environment, using fuel distribution and potential fire behaviour to inform safe living. The students鈥 methodology was informed by geospatial data analysis and community and stakeholder engagement to assess and communicate the risk better,鈥 Associate Professor Katurji says.听听
鈥淭his pilot research aligns well with Fire and Emergency's ongoing national wildfire threat analysis programme. Identifying new fuel types in our rural-urban landscape will help in fire behaviour prediction and firefighting resource allocation.鈥
Hamilton says Canterbury has a significant number of hedgerows and shelterbelts near rural infrastructure but, despite this, there is limited research on their role in fire risk.
Part of the research project was to create mitigation strategies based on their findings, Martin explains. 鈥淲e discovered that native plantings, creating breaks in shelterbelts and planting hedgerows and shelterbelts further from buildings are key to reducing fire risk,鈥 she says.听听
In addition to this the team created a risk index to help identify high-risk areas. 鈥淏y understanding the patterns and characteristics of hedgerows, communities can reduce fire impact before it starts and respond quicker when fires start,鈥 Hamilton says.
As part of a compulsory third-year course, Research for Resilient Environments and Communities, for Bachelor of Science students majoring in Geography and Environmental Science, the project challenged students to tackle real-world issues, something Martin says she found particularly rewarding.
鈥淥ne of my key takeaways was learning to collaborate with a community partner, which required adaptability and delegation,鈥 she says.
鈥淭he project highlighted the value of working with partners like Fire and Emergency. It allowed us to apply classroom and lab knowledge to real-world situations while also upskilling our data analysis skills.鈥澨
Fire and Emergency Wildfire Scientist Grant Pearce says 鈥渟tudent projects like this are a great way to initiate new research. The students provide new ideas and approaches that we may not be aware of, and which can lead to better outcomes. Fire and Emergency will look to use this partnership approach again next year."
The team sees significant potential for scaling up the research nationally and internationally.
鈥淲e looked at our research limitations and found that with more skills, time, and technology we could enable more precise differentiation of hedgerows from other vegetation and structures,鈥 Hamilton says.