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Articles, UC QuakeStudies

A digital photograph in PDF format with caption, looking North East down Liggins street, where it intersects with Jean Batten St. An empty Red Zoned lot is also on the corner.

Articles, UC QuakeStudies

Caption reads: "When we came to Bexley we were ready for a new life. We slowed down and started to enjoy ourselves. Before we moved to the area we never realised such a perfect place existed."

Articles, UC QuakeStudies

A digital photograph in PDF format with caption. A Horseshoe Lake resident emptying chemical toilet into waste tank that sits on the side of the road (Kingsford St).

Articles, UC QuakeStudies

A digital photograph in PDF format with caption. Image taken from within a Red Zoned home on Kingsford st. Residents still living here and have written poems on the walls of the lounge.

Articles, UC QuakeStudies

Caption reads: "I lived in London all through the Blitz, you get used to these things. Living here after the earthquakes didn’t bother me. I had a small battery operated radio and the neighbour lent me her generator. Initially I used it to run the fridge but after a while I couldn’t get it started. I don’t want to move, to be quite honest. There’s nothing that will be able to replace the life I built here."

Articles, UC QuakeStudies

Caption reads: "We all wish we could stay here. We want them to repair our homes, but they say they won't and you know nothing will change their minds."

Articles, UC QuakeStudies

A photograph captioned, "I guess the only good thing that came out of the earthquake is that we know the residents better. It definitely bought people together, and the support was incredible. If you didn't know your neighbours before, you definitely knew them after the quake. We made friends out of this".

Articles, UC QuakeStudies

Caption reads: "Bexley was a hidden gem. A diamond in the rough. It was a paradise, a place where you could hear the sea and smell the salt."

Research papers, University of Canterbury Library

Describes an extensive experimental program at the University of Canterbury, for the development of new structural systems and connections for multi-storey laminated veneer lumber (LVL) timber buildings in earthquake-prone areas. The proposed innovative ductile timber connections are conceptually similar to recent seismic solutions successfully developed for precast concrete multi- storey buildings. The paper gives an overview of the research program, and the results of quasi-static cyclic tests on frame subassemblies, including exterior beam-column joints and cantilever columns, as well as pseudo-dynamic tests on cantilever columns. The experimental results showed significant dissipation of hysteretic energy, good self-centering capacity and no appreciable damage of the structural elements, confirming the expected enhanced performance of the proposed structural systems.