A man stands on a wooden deck. There is a visible gap between the steps and the lower decking. The photographer comments, "Decks and steps have separated".
An earthquake memories story from Sue Gillan, Personal Assistant to General Manager Older Person's, Orthopaedics and Rehabilitation, The Princess Margaret Hospital, titled, "All hands on deck".
A photograph of Whole House Reuse item 390. This item was salvaged from 19 Admiral Way in New Brighton as part of the Whole House Reuse project.
A thumbnail photograph of Whole House Reuse item 392, cropped for the catalogue. This item was salvaged from 19 Admiral Way in New Brighton as part of the Whole House Reuse project.
A photograph of Whole House Reuse item 392. This item was salvaged from 19 Admiral Way in New Brighton as part of the Whole House Reuse project.
A photograph of Whole House Reuse item 391. This item was salvaged from 19 Admiral Way in New Brighton as part of the Whole House Reuse project.
A thumbnail photograph of Whole House Reuse item 390, cropped for the catalogue. This item was salvaged from 19 Admiral Way in New Brighton as part of the Whole House Reuse project.
A thumbnail photograph of Whole House Reuse item 391, cropped for the catalogue. This item was salvaged from 19 Admiral Way in New Brighton as part of the Whole House Reuse project.
Workers constructing a deck between the temporary classrooms on the Ilam Oval.
Workers constructing a deck between the temporary classrooms on the Ilam Oval.
Workers constructing a deck between the temporary classrooms on the Ilam Oval.
Pot plants on the front deck of the Gap Filler Headquarters office building in Sydenham.
Wood all wrapped up and ready to be made into decks at the College of Education.
A deck which is now suspended over empty space at the edge of the cliff in Sumner.
The cracked foundations of a house on Charles Street in Kaiapoi. Planks have been removed from the front decking to allow access to the foundations.
A public talk by Helina Stil, South Island Manager at Nikau Contractors. This talk, entitled 'Deconstruction to construction', formed part of the Plenary Two session, 'Clearing the decks'.
A view through a safety fence to the damaged Bridge Tavern in Kaiapoi. Severe cracks in the building's foundations can be seen, and the front decking has sagged.
A photograph captioned by BeckerFraserPhotos, "A house at 464 Avonside Drive in Avonside which has moved towards the river while the deck stayed put".
Photograph captioned by BeckerFraserPhotos, "Otakaro Place, Bexley. A great hole has opened up between the deck and the garden with fissures all over the garden".
A public talk by Michael Gorman, Christchurch City Missioner at the City Mission. This talk, entitled 'Dealing with the social aftershock', formed part of the Plenary Two session, 'Clearing the decks'.
A public talk by Dr Kelvin Berryman, Director of Natural Hazards at GNS Science. This talk, entitled 'What's underneath? Understanding seismic science', formed part of the Plenary Two session, 'Clearing the decks'.
A public talk by Dr Ann Brower, Senior Lecturer at Lincoln University. This talk, entitled 'Have we learnt the hard lessons?', formed part of the Plenary Two session, 'Clearing the decks'.
Taken during a scenic flight over Christchurch, New Zealand, 3 months after the deadly earthquake of 22 February, 2011. Much of the inner city CBD is still cordoned off and will be for some time. About 900 buildings are set for demolition. Taken aboard the Southern DC3 www.so...
A video of an interview with Terry Huggins about a boulder crashing into the side of his neighbour's house in Sumner. The boulder came lose from the cliffs above and smashed through the deck of the house into one of the supporting poles. It is the third large boulder to hit the house, with one also lodged in a bedroom.
The government's looking overseas to get more hands on deck to help with the rebuild from Cyclone Gabrielle. A new short-term Recovery Visa will bring in specialist foreign workers through a similar pathway used after the Christchurch and Kaikoura earthquakes. The visas will be fast-tracked with officials aiming to get applications through within seven days. Corn Dann spoke with immigration minister Michael Wood.
The Mw 6.2 February 22nd 2011 Christchurch earthquake (and others in the 2010-2011 Canterbury sequence) provided a unique opportunity to study the devastating effects of earthquakes first-hand and learn from them for future engineering applications. All major events in the Canterbury earthquake sequence caused widespread liquefaction throughout Christchurch’s eastern suburbs, particularly extensive and severe during the February 22nd event. Along large stretches of the Avon River banks (and to a lesser extent along the Heathcote) significant lateral spreading occurred, affecting bridges and the infrastructure they support. The first stage of this research involved conducting detailed field reconnaissance to document liquefaction and lateral spreading-induced damage to several case study bridges along the Avon River. The case study bridges cover a range of ages and construction types but all are reinforced concrete structures which have relatively short, stiff decks. These factors combined led to a characteristic deformation mechanism involving deck-pinning and abutment back-rotation with consequent damage to the abutment piles and slumping of the approaches. The second stage of the research involved using pseudo-static analysis, a simplified seismic modelling tool, to analyse two of the bridges. An advantage of pseudo-static analysis over more complicated modelling methods is that it uses conventional geotechnical data in its inputs, such as SPT blowcount and CPT cone resistance and local friction. Pseudo-static analysis can also be applied without excessive computational power or specialised knowledge, yet it has been shown to capture the basic mechanisms of pile behaviour. Single pile and whole bridge models were constructed for each bridge, and both cyclic and lateral spreading phases of loading were investigated. Parametric studies were carried out which varied the values of key parameters to identify their influence on pile response, and computed displacements and damages were compared with observations made in the field. It was shown that pseudo-static analysis was able to capture the characteristic damage mechanisms observed in the field, however the treatment of key parameters affecting pile response is of primary importance. Recommendations were made concerning the treatment of these governing parameters controlling pile response. In this way the future application of pseudo-static analysis as a tool for analysing and designing bridge pile foundations in liquefying and laterally spreading soils is enhanced.
Shaking table testing of a full-scale three storey resilient and reparable complete composite steel framed building system is being conducted. The building incorporates a number of interchangeable seismic resisting systems of New Zealand and Chinese origin. The building has a steel frame and cold formed steel-concrete composite deck. Energy is dissipated by means of friction connections. These connections are arranged in a number of structural configurations. Typical building nonskeletal elements (NSEs) are also included. Testing is performed on the Jiading Campus shaking table at Tongji University, Shanghai, China. This RObust BUilding SysTem (ROBUST) project is a collaborative China-New Zealand project sponsored by the International Joint Research Laboratory of Earthquake Engineering (ILEE), Tongji University, and a number of agencies and universities within New Zealand including BRANZ, Comflor, Earthquake Commission, HERA, QuakeCoRE, QuakeCentre, University of Auckland, and the University of Canterbury. This paper provides a general overview of the project describing a number of issues encountered in the planning of this programme including issues related to international collaboration, the test plan, and technical issues.
Shaking table testing of a full-scale three storey resilient and reparable complete composite steel framed building system is being conducted. The building incorporates a number of interchangeable seismic resisting systems of New Zealand and Chinese origin. The building has a steel frame and cold formed steel-concrete composite deck. Energy is dissipated by means of friction connections. These connections are arranged in a number of structural configurations. Typical building non-skeletal elements (NSEs) are also included. Testing is performed on the Jiading Campus shaking table at Tongji University, Shanghai, China. This RObust BUilding SysTem (ROBUST) project is a collaborative China-New Zealand project sponsored by the International Joint Research Laboratory of Earthquake Engineering (ILEE), Tongji University, and a number of agencies and universities within New Zealand including the BRANZ, Comflor, Earthquake Commission, HERA, QuakeCoRE, QuakeCentre, University of Auckland, and the University of Canterbury. This paper provides a general overview of the project describing a number of issues encountered in the planning of this programme including issues related to international collaboration, the test plan, and technical issues.