Photograph captioned by Fairfax, "Emma Howard was married today to Chris Greenslade at the Christ the King church centre on Greers Road, Burnside. Howard was pulled out of the collapsed PGC building after February 22nd earthquake in Christchurch".
Photograph captioned by Fairfax, "Christchurch mayor Bob Parker surveys the earthquake damage to the Science Alive/old train station building on Moorhouse Avenue. The clock tower has large cracks and the clock itself stopped at the time the earthquake hit".
Photograph captioned by Fairfax, "Christchurch mayor Bob Parker surveys the earthquake damage to the Science Alive/old train station building on Moorhouse Avenue. The clock tower has large cracks and the clock itself stopped at the time the earthquake hit".
Photograph captioned by Fairfax, "Christchurch mayor Bob Parker surveys the earthquake damage to the Science Alive/old train station building on Moorhouse Avenue. The clock tower has large cracks and the clock itself stopped at the time the earthquake hit".
Page 5 of Section A of the Christchurch Press, published on Tuesday 1 April 2014.
Page 3 of Section A of the South Island edition of the Christchurch Press, published on Friday 12 August 2011.
Page 1 of Section A of the South Island edition of the Christchurch Press, published on Monday 18 July 2011.
The Kaikoura earthquake in November 2016 highlighted the vulnerability of New Zealand’s rural communities to locally-specific hazard events, which generate regional and national scale impacts. Kaikoura was isolated with significant damage to both the east coast road (SH1) and rail corridor, and the Inland Road (Route 70). Sea bed uplift along the coast was significant – affecting marine resources and ocean access for marine operators engaged in tourism and harvesting, and recreational users. While communities closest to the earthquake epicentre (e.g., Kaikoura, Waiau, Rotherham and Cheviot) suffered the most immediate earthquake damage, the damage to the transport network, and the establishment of an alternative transport route between Christchurch and Picton, has significantly impacted on more distant communities (e.g., Murchison, St Arnaud and Blenheim). There was also considerable damage to vineyard infrastructure across the Marlborough region and damage to buildings and infrastructure in rural settlements in Southern Marlborough (e.g., Ward and Seddon).
This report forms part of a research project examining rural community resilience to natural hazard events, with a particular focus on transient population groups. A preliminary desktop and scoping exercise was undertaken to examine nine communities affected by the Kaikoura earthquake and to identify the variety of transient population groups that are commonly (and increasingly) found in rural New Zealand (see Wilson & Simmons, 2017). From this, four case study communities – Blenheim, Kaikoura, Waiau and St Arnaud – were selected to represent a range of settlement types. These communities varied in respect of social, economic and geographic features, including the presence of particular transient population groups, and earthquake impact. While the 2016 Kaikoura earthquake provided a natural hazard event on which to focus the research, the research interest was in long-term (and broad) community resilience, rather than short-term (and specific) response and recovery actions which occurred post-earthquake.
Horrible earthquake on the morning of 4 SEP 2010. Felt throughout New Zealand... Aftershocks still ongoing weeks after the 7.1M earthquake.
“One of the most basic and fundamental questions in urban master planning and building regulations is ‘how to secure common access to sun, light and fresh air?” (Stromann-Andersen & Sattrup, 2011). Daylighting and natural ventilation can have significant benefits in office buildings. Both of these ‘passive’ strategies have been found to reduce artificial lighting and air-conditioning energy consumption by as much as 80% (Ministry for the Environment, 2008); (Brager, et al., 2007). Access to daylight and fresh air can also be credited with improved occupant comfort and health, which can lead to a reduction of employee absenteeism and an increase of productivity (Sustainability Victoria, 2008). In the rebuild of Christchurch central city, following the earthquakes of 2010 and 2011, Cantabrians have expressed a desire for a low-rise, sustainable city, with open spaces and high performance buildings (Christchurch City Council, 2011). With over 80% of the central city being demolished, a unique opportunity to readdress urban form and create a city that provides all buildings with access to daylight and fresh air exists. But a major barrier to wide-spread adoption of passive buildings in New Zealand is their dependence on void space to deliver daylight and fresh air – void space which could otherwise be valuable built floor space. Currently, urban planning regulations in Christchurch prioritize density, allowing and even encouraging low performance compact buildings. Considering this issue of density, this thesis aimed to determine which urban form and building design changes would have the greatest effect on building performance in Central City Christchurch. The research proposed and parametrically tested modifications of the current compact urban form model, as well as passive building design elements. Proposed changes were assessed in three areas: energy consumption, indoor comfort and density. Three computer programs were used: EnergyPlus was the primary tool, simulating energy consumption and thermal comfort. Radiance/Daysim was used to provide robust daylighting calculations and analysis. UrbaWind enabled detailed consideration of the urban wind environment for reliable natural ventilation predictions. Results found that, through a porous urban form and utilization of daylight and fresh air via simple windows, energy consumption could be reduced as much as 50% in buildings. With automatic modulation of windows and lighting, thermal and visual comfort could be maintained naturally for the majority of the occupied year. Separation of buildings by as little as 2m enabled significant energy improvements while having only minimal impact on individual property and city densities. Findings indicated that with minor alterations to current urban planning laws, all buildings could have common access to daylight and fresh air, enabling them to operate naturally, increasing energy efficiency and resilience.
The sequence of earthquakes that has greatly affected Christchurch and Canterbury since September 2010 has again demonstrated the need for seismic retrofit of heritage unreinforced masonry buildings. Commencing in April 2011, the damage to unreinforced stone masonry buildings in Christchurch was assessed and recorded with the primary objective being to document the seismic performance of these structures, recognising that they constitute an important component of New Zealand’s heritage architecture. A damage statistics database was compiled by combining the results of safety evaluation placarding and post-earthquake inspections, and it was determined that the damage observed was consistent with observations previously made on the seismic performance of stone masonry structures in large earthquakes. Details are also given on typical building characteristics and on failure modes observed. Suggestions on appropriate seismic retrofit and remediation techniques are presented, in relation also to strengthening interventions that are typical for similar unreinforced stone masonry structures in Europe.
A video of the opening night of the Heathcote Valley Inn. The inn has been rebuilt, after the 133-year-old original inn was damaged in the 4 September 2010 earthquake. Mayor Bob Parker officially opens the new building.
Currently there is a worldwide renaissance in timber building design. At the University of Canterbury, new structural systems for commercial multistorey timber buildings have been under development since 2005. These systems incorporate large timber sections connected by high strength post-tensioning tendons, and timber-concrete composite floor systems, and aim to compete with existing structural systems in terms of cost, constructability, operational and seismic performance. The development of post-tensioned timber systems has created a need for improved lateral force design approaches for timber buildings. Current code provisions for seismic design are based on the strength of the structure, and do not adequately account for its deformation. Because timber buildings are often governed by deflection, rather than strength, this can lead to the exceedence of design displacement limitations imposed by New Zealand codes. Therefore, accurate modeling approaches which define both the strength and deformation of post-tensioned timber buildings are required. Furthermore, experimental testing is required to verify the accuracy of these models. This thesis focuses on the development and experimental verification of modeling approaches for the lateral force design of post-tensioned timber frame and wall buildings. The experimentation consisted of uni-direcitonal and bi-directional quasi-static earthquake simulation on a two-thirds scale, two-storey post-tensioned timber frame and wall building with timber-concrete composite floors. The building was subjected to lateral drifts of up to 3% and demonstrated excellent seismic performance, exhibiting little damage. The building was instrumented and analyzed, providing data for the calibration of analytical and numerical models. Analytical and numerical models were developed for frame, wall and floor systems that account for significant deformation components. The models predicted the strength of the structural systems for a given design performance level. The static responses predicted by the models were compared with both experimental data and finite element models to evaluate their accuracy. The frame, wall and floor models were then incorporated into an existing lateral force design procedure known as displacement-based design and used to design several frame and wall structural systems. Predictions of key engineering demand parameters, such as displacement, drift, interstorey shear, interstorey moment and floor accelerations, were compared with the results of dynamic time-history analysis. It was concluded that the numerical and analytical models, presented in this thesis, are a sound basis for determining the lateral response of post-tensioned timber buildings. However, future research is required to further verify and improve these prediction models.
A structural engineer has told the Canterbury Earthquakes Royal Commission that illegal building techniques are being used in the Christchurch rebuild because the engineering profession is in crisis.
When the Canterbury earthquakes brought about the destruction of almost all of the buildings in central Christchurch, it created a unique opportunity for an insight into the past.
Photograph captioned by Fairfax, "Owners of the Octagon hang models to decorate the structures holding up the tower of the building after earthquake damage. Chris Stead (left) from Theme Pro and stone mason Andy Carmichael from Cut'n'Carve Stone".
Photograph captioned by Fairfax, "Owners of the Octagon hang models to decorate the structures holding up the tower of the building after earthquake damage. Chris Stead (left) from Theme Pro and stone mason Andy Carmichael from Cut'n'Carve Stone".
Photograph captioned by Fairfax, "Richard Loffhagen, owner of Simply Catering, stands on the old site on the corner of Madras Street and Salisbury Street where he wrote a message on the wall the day the old building was brought down".
The Education Minister is waiting for the Canterbury Earthquake Royal Commission to report back before considering a national survey of all school buildings in the country.
The Earthquake Minister Gerry Brownlee says it would be an absolute disaster for Christchurch, if the City Council stopped issuing building consents next week.
West Auckland residents begin the cleanup after yesterday's tornado. The Canterbury Earthquakes Royal Commission calls for the seismic grading of all non-residential buildings.
Witnesses before the Canterbury Earthquake Royal Commission have been questioned over whether preservation of heritage buildings was given more consideration than preserving human lives.
Photograph captioned by Fairfax, "Life in ruins: 27 year-old Chris Meyer, owner and operator of Federal Coffee House, which was located at 160 Manchester Street. The Heritage 1 building that he used to run his business from is being torn down tomorrow".
Photograph captioned by Fairfax, "Life in ruins: 27 year-old Chris Meyer, owner and operator of Federal Coffee House, which was located at 160 Manchester Street. The Heritage 1 building that he used to run his business from is being torn down tomorrow".
Photograph captioned by Fairfax, "Life in ruins: 27 year-old Chris Meyer, owner and operator of Federal Coffee House, which was located at 160 Manchester Street. The Heritage 1 building that he used to run his business from is being torn down tomorrow".
Photograph captioned by Fairfax, "Aftershock damage at the Cathedral Square site of The Press caused by the Boxing Day quakes. Damage caused to the builder's store in the basement of The Press building by a neighbouring brick wall falling into the roof".
Photograph captioned by Fairfax, "Aftershock damage at the Cathedral Square site of The Press caused by the Boxing Day quakes. Damage caused to the builder's store in the basement of The Press building by a neighbouring brick wall falling into the roof".
Photograph captioned by Fairfax, "Christchurch Mayor Bob Parker surveys the earthquake damage to the Science Alive building (previously the old train station) on Moorhouse Avenue. The clock tower has large cracks and the clock itself stopped at the time the earthquake hit".
Photograph captioned by Fairfax, "Christchurch Mayor Bob Parker surveys the earthquake damage to the Science Alive building (previously the old train station) on Moorhouse Avenue. The clock tower has large cracks and the clock itself stopped at the time the earthquake hit".