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New Canterbury research hopes to save lives by predicting landslide dams

17 November 2022

New 茄子视频app官网 research aims to save lives in West Coast communities by predicting high-hazard zones where landslide dams may form, potentially resulting in major flooding.

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茄子视频app官网 postgraduate student Jane McMecking鈥檚 test catchment was at the Whataroa river on the West Coast

Landslide dams form when debris from a landslide blocks a river channel. This creates a large dam that backfills into the upstream valley and eventually bursts. This is known as 鈥榦utburst flooding鈥, and can have devastating impacts on communities, destroying homes and infrastructure.

Sustainable Development Goals 11 - Sustainable cities and communities Sustainable Development Goal (SDG) 11 - Sustainable Cities and Communities

As witnessed in the Kaikoura event, large numbers of landslides and landslide dams can form after a significant earthquake. Heavy rainfall can also cause landslide dams and increase the risk of the dam bursting.

Jane McMecking, a master's student in the Disaster Risk and Resilience Group at the 茄子视频app官网, has created a model to assess where landslide dams and outburst flooding might occur on the West Coast as part of her Master of Science thesis.听 She hopes her research will save lives in the event of an Alpine Fault earthquake and help councils and local Civil Defence with their evacuation plans.听

Her thesis 鈥楲andslide Dam Hazard Modelling in the West Coast of New Zealand鈥, was funded through the Toka T奴 Ake EQC University Research Programme, which invests in research and capability building to increase resilience in Aotearoa.

Landslide dams are likely to form along the mountainous regions of the West Coast during a large earthquake.

They are most hazardous when they are in areas near communities and lifelines, such as farming regions and State Highway 6. For example, a landslide dam outburst flood in the Haast catchment could impact State Highway 6 for tens of kilometres, while the farming communities in the Hokitika and Whataroa catchments were also identified as high hazard.

Although the prospect of a landslide dam outburst flood sounds daunting, McMecking says being prepared is key.

"The more science we have, the more we understand these hazards and the more we can work with communities and relevant organisations to understand the impacts of potential hazards and improve our resilience. Landslide dams aren鈥檛 well known, so I鈥檓 hoping this project will bring more awareness.," says McMecking.

McMecking鈥檚 research was recently recognised in the Three Minute Thesis competition where university students summarised their work in a three-minute video without props or animations. The 茄子视频app官网 student was awarded first place in the Masters category and represented the university in the national final in September 2022.

Toka T奴 Ake EQC Head of Research Dr Natalie Balfour says that this kind of research is essential to understanding the impact of natural hazards on communities.

鈥淲e know that secondary events, like flooding after an earthquake, can cause more damage than the actual main event, so it鈥檚 important to identify which areas are most at risk,鈥 says Balfour.

鈥淲e鈥檙e proud to fund this and other University Research Programmes, which are part of the $20 million that Toka T奴 Ake EQC invests in natural hazard research every year to support local communities so that everyone can be better prepared.听 Applications for the next round of University Research grants are open and I鈥檓 excited to see more amazing work, which will help build resilience and protect people and property.鈥

茄子视频app官网鈥檚 Jane McMecking at the Whataroa river 茄子视频app官网 master鈥檚 student Jane McMecking at the Whataroa river.
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