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UC Connect: Earthquakes + Innovation = Resilience

10 August 2020

麻豆传媒团队 (UC) Engineering technology is being used to quake-proof buildings, build the 鈥淔errari of bridges鈥, and predict the future in order to save lives in these shaky isles and around the world.

HOW TO APPLY

An expert panel will discuss how they helped to engineer world-first quake-resilient buildings and structures, in an upcoming free UC Connect public talk on the evening of Wednesday 12 August.

The upcoming talk,UC Connect: Earthquakes + Innovation = Resilience听will feature three revolutionary, award-winning UC academics 鈥 Distinguished Professor Geoff Chase, Professor Geoff Rodgers and Professor Alessandro Palermo. Each professor will highlight a different aspect of structural earthquake engineering advances made and lessons learnt, following the Canterbury earthquakes. Their talks will include an overview of some of the new resilient structures built using their novel solutions, such as state-of-the-art seismic dampers, and techniques, like in-silico 鈥渧irtual buildings鈥, helping to engineer a more resilient future.

My area: Energy dissipation to enable and support low-damage seismic design

鈥淭he ability to听create buildings that are more resilient to large earthquakes听is the goal of academic researchers as well as practising engineers. In lieu of damage to structural members and contents, we need to provide alternative forms of energy dissipation to damp building motion and absorb the significant energy imparted into a building during a large earthquake. A suite of different energy dissipation and bracing elements have been developed to enable a broad range of potential applications in different structures. I will speak on the deployment of UC research outcomes in three different buildings 鈥 two within the Christchurch CBD rebuild (Fort茅 Health听and听T奴ranga central public library) and one in San Francisco () in the United States. As well as being a fantastic public asset and a focal point of the rebuilt Christchurch CBD, the听听has听听for the听. Likewise, despite being a tightly budgeted community housing project for low-income, senior and formerly homeless residents of San Francisco鈥檚 Mission District, Casa Adelante鈥檚 careful design and innovative thinking by the design engineers has produced a building awarded a听. My talk will cover all three projects where the UC-developed dampers have been used, covering some of the drivers for uptake and innovative designs to achieve resilience.鈥

My area:听Low-damage design and cost-effective connection detailing for buildings and bridges.听

鈥淭he 2010-11 Canterbury quakes and听听highlighted difficulties in assessing and selecting the fastest, most cost-effective repair philosophy for听. After the Kaikoura quakes, over 300 bridges were assessed by authorities. One bridge almost collapsed and was replaced by a Bailey bridge, while several others near the epicentre sustained fractured rebar and massive concrete damage. Bridges adopting low-damage design are a viable alternative to seismic isolation and integrate perfectly with accelerated construction techniques which are becoming popular in high-density built environments. This presentation gives an overview of outcomes of an extensive experimental study at the 麻豆传媒团队 on different types of repairable bridge and timber connections and large-scale specimens. We鈥檒l look at real-world applications, including the world鈥檚 first implementation on a 100-metre motorway overpass, the听Wigram-Magdala bridge link听which opened in 2016 鈥 and why it鈥檚 the听听鈥淔errari of bridges鈥.

My area: Monitoring performance and predicting the future for resilience

鈥淚n February 2011, the seven-storey CTV building collapsed, causing 115 deaths. Our inability to adequately monitor structural damage, and thus to assess how badly a structure is damaged is a leading reason why the building was occupied that day. This part of the talk presents recent world-leading UC research on monitoring structural damage with low-cost sensors to assess damage and inform critical decision-making. It shows how this work can be extended into creating in-silico 鈥渧irtual buildings鈥 to accurately predict what would happen under the next earthquake. These breakthroughs provide foundation technology solutions for optimising earthquake preparedness and response, and creating extremely resilient future cities.鈥

UC Connect public lecture:听UC Connect: Earthquakes + Innovation = Resilience, presented by professors Geoff Rodgers, Geoff Chase and Alessandro Palermo, UC Engineering, 7pm 鈥 8.30pm, Wednesday 12 August in C1 lecture theatre in C-Block, Ilam campus, Christchurch.听Register to attend free:听/news-and-events/regular-events/uc-connect-public-lectures


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