File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-015 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-009 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-010 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-018 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-017 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-008 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-023 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-013 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-019 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-011 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-007 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-021 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-025 From the collection of Christchurch City Libraries.
File reference: CCL-2011-08-12-CanterburyPublic Library pre-demolition-012 From the collection of Christchurch City Libraries.
A photograph of a crack in the roof of an earthquake-damaged building at the University of Canterbury.
A photograph of a crack in the floor of an earthquake-damaged building at the University of Canterbury.
Workers survey a street in Avonside where there are large cracks, piles of liquefaction dug up from people's houses, fenced off portions of the street and an army vehicle parked, after the September 4th earthquake.
Manchester Street looking north-ish, towards the intersection with Armagh Street.
Summary of oral history interview with Hana about her experiences of the Canterbury earthquakes. Pseudonym used to identify interviewee.
A scanned copy of a photograph of the garden of Di Madgin's former home in the Red Zone, taken before the earthquakes.
A scanned copy of a photograph of the garden of Di Madgin's former home in the Red Zone, taken before the earthquakes.
Shirley Community Centre, Shirley Road, Christchurch. File reference: CCL-2012-05-10-Around-Shirley-May-2012 DSC_02866.JPG From the collection of Christchurch City Libraries.
Shirley Community Centre, Shirley Road, Christchurch. File reference: CCL-2012-05-10-Around-Shirley-May-2012 DSC_02862.JPG From the collection of Christchurch City Libraries.
Shirley Community Centre, Shirley Road, Christchurch. File reference: CCL-2012-05-10-Around-Shirley-May-2012 DSC_02869.JPG From the collection of Christchurch City Libraries.
Shirley Community Centre, Shirley Road, Christchurch. File reference: CCL-2012-05-10-Around-Shirley-May-2012 DSC_02863.JPG From the collection of Christchurch City Libraries.
Shirley Community Centre, Shirley Road, Christchurch. File reference: CCL-2012-05-10-Around-Shirley-May-2012 DSC_02867.JPG From the collection of Christchurch City Libraries.
This paper presents on-going challenges in the present paradigm shift of earthquakeinduced ground motion prediction from empirical to physics-based simulation methods. The 2010-2011 Canterbury and 2016 Kaikoura earthquakes are used to illustrate the predictive potential of the different methods. On-going efforts on simulation validation and theoretical developments are then presented, as well as the demands associated with the need for explicit consideration of modelling uncertainties. Finally, discussion is also given to the tools and databases needed for the efficient utilization of simulated ground motions both in specific engineering projects as well as for near-real-time impact assessment.
The city of Christchurch has experienced over 10,000 aftershocks since the 4th of September 2010 earthquake of which approximately 50 have been greater than magnitude 5. The damage caused to URM buildings in Christchurch over this sequence of earthquakes has been well documented. Due to the similarity in age and construction of URM buildings in Adelaide, South Australia and Christchurch (they are sister cities, of similar age and heritage), an investigation was conducted to learn lessons for Adelaide based on the Christchurch experience. To this end, the number of URM buildings in the central business districts of both cities, the extent of seismic strengthening that exists in both cities, and the relative earthquake hazards for both cities were considered. This paper will report on these findings and recommend strategies that the city of Adelaide could consider to significantly reduce the seismic risk posed by URM buildings in future earthquake.
A photograph of cracks to the wall of the earthquake-damaged Wheki Building at the University of Canterbury.
The Navy's multi-purpose vessel HMNZS Canterbury in Lyttelton Harbour. 700 meals were prepared in the HMNZS Canterbury for Lyttelton after the 22 February 2011 earthquake.