A photograph of Freerange Press co-director Joseph Cederwall giving a speech at the launch of Freerange Press's latest journal, Freerange Vol. 7: The Commons. The event was part of FESTA 2013.
A PDF copy of a publication promoting holiday destinations in the lower South Island.
A PDF copy of a publication promoting holiday destinations in the lower South Island.
A PDF copy of a publication promoting Christmas shopping in Kaiapoi, Kairaki, and The Pines.
A PDF copy of a publication promoting fashions for the autumn and winter of 2013.
A PDF copy of a publication promoting fashions for the spring and summer of 2012.
A PDF copy of a publication promoting fashions for the spring and summer of 2013.
A PDF copy of a publication promoting fashions for the autumn and winter of 2012.
A PDF copy of a publication about the Five Ways to Wellbeing. The publication was produced by the Mental Health Foundation of New Zealand with the aim of developing confidence in organisations and workers that their communication of the messages is supported by best practice, built upon good understanding of the evidence and reflects a consistent national approach.
A photograph of Emma Johnson giving a speech at the public launch event for The Wet Issue by Freerange Press. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A photograph of the public launch event for The Wet Issue by Freerange Press. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A photograph of the public launch event for The Wet Issue by Freerange Press. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A photograph of The Wet Issue by Freerange Press, on display at the public launch event. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A photograph of the public launch event for The Wet Issue by Freerange Press. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A photograph of artist Noel Meek giving a speech at the public launch event for The Wet Issue by Freerange Press. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A photograph of the public launch event for The Wet Issue by Freerange Press. Attendees are watching a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek. The event was held at Space Academy as part of FESTA 2014.
A photograph of the public launch event for The Wet Issue by Freerange Press. The attendees are watching a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek. The event was held at Space Academy as part of FESTA 2014.
A photograph of the public launch event for The Wet Issue by Freerange Press. The attendees are watching a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek. The event was held at Space Academy as part of FESTA 2014.
A photograph of the public launch event for The Wet Issue by Freerange Press. The attendees are watching a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek. The event was held at Space Academy as part of FESTA 2014.
A photograph of artist Noel Meek behind the sound desk at the public launch event for The Wet Issue by Freerange Press. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A photograph of the public launch event for The Wet Issue by Freerange Press. People are gathered to watch a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek. The event was held at Space Academy as part of FESTA 2014.
A photograph of the public launch event for The Wet Issue by Freerange Press. The attendees are watching a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek. The event was held at Space Academy as part of FESTA 2014.
A photograph of the public launch event for The Wet Issue by Freerange Press. Attendees are watching a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek. The event was held at Space Academy as part of FESTA 2014.
A photograph of the public launch event for The Wet Issue by Freerange Press. The attendees are watching a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek. The event was held at Space Academy as part of FESTA 2014.
A photograph of someone reading a copy of The Wet Issue by Freerange Press, at the public launch event. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A photograph of the public launch event for The Wet Issue by Freerange Press. The journal is being 'launched' with an elastic tie by Freerange Press director Barnaby Bennett. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A photograph of Freerange Press director Barnaby Bennett standing on a chair to give a speech at the public launch event for The Wet Issue by Freerange Press. The event was held at Space Academy as part of FESTA 2014. It was accompanied by a water-inspired visual and sonic artwork by Olivia Webb and Noel Meek.
A PDF copy of an article published in the International Journal of Mental Health Promotion on 9 August 2016. The article is authored by Kristi Calder, Lucy D'Aeth, Sue Turner, Ciaran Fox and Annabel Begg. The article can be viewed in the online journal here: http://dx.doi.org/10.1080/14623730.2016.1210531
The recent instances of seismic activity in Canterbury (2010/11) and Kaikōura (2016) in New Zealand have exposed an unexpected level of damage to non-structural components, such as buried pipelines and building envelope systems. The cost of broken buried infrastructure, such as pipeline systems, to the Christchurch Council was excessive, as was the cost of repairing building envelopes to building owners in both Christchurch and Wellington (due to the Kaikōura earthquake), which indicates there are problems with compliance pathways for both of these systems. Councils rely on product testing and robust engineering design practices to provide compliance certification on the suitability of product systems, while asset and building owners rely on the compliance as proof of an acceptable design. In addition, forensic engineers and lifeline analysts rely on the same product testing and design techniques to analyse earthquake-related failures or predict future outcomes pre-earthquake, respectively. The aim of this research was to record the actual field-observed damage from the Canterbury and Kaikōura earthquakes of seismic damage to buried pipeline and building envelope systems, develop suitable testing protocols to be able to test the systems’ seismic resilience, and produce prediction design tools that deliver results that reflect the collected field observations with better accuracy than the present tools used by forensic engineers and lifeline analysts. The main research chapters of this thesis comprise of four publications that describe the gathering of seismic damage to pipes (Publication 1 of 4) and building envelopes (Publication 2 of 4). Experimental testing and the development of prediction design tools for both systems are described in Publications 3 and 4. The field observation (discussed in Publication 1 of 4) revealed that segmented pipe joints, such as those used in thick-walled PVC pipes, were particularly unsatisfactory with respect to the joint’s seismic resilience capabilities. Once the joint was damaged, silt and other deleterious material were able to penetrate the pipeline, causing blockages and the shutdown of key infrastructure services. At present, the governing Standards for PVC pipes are AS/NZS 1477 (pressure systems) and AS/NZS 1260 (gravity systems), which do not include a protocol for evaluating the PVC pipes for joint seismic resilience. Testing methodologies were designed to test a PVC pipe joint under various different simultaneously applied axial and transverse loads (discussed in Publication 3 of 4). The goal of the laboratory experiment was to establish an easy to apply testing protocol that could fill the void in the mentioned standards and produce boundary data that could be used to develop a design tool that could predict the observed failures given site-specific conditions surrounding the pipe. A tremendous amount of building envelope glazing system damage was recorded in the CBDs of both Christchurch and Wellington, which included gasket dislodgement, cracked glazing, and dislodged glazing. The observational research (Publication 2 of 4) concluded that the glazing systems were a good indication of building envelope damage as the glazing had consistent breaking characteristics, like a ballistic fuse used in forensic blast analysis. The compliance testing protocol recognised in the New Zealand Building Code, Verification Method E2/VM1, relies on the testing method from the Standard AS/NZS 4284 and stipulates the inclusion of typical penetrations, such as glazing systems, to be included in the test specimen. Some of the building envelope systems that failed in the recent New Zealand earthquakes were assessed with glazing systems using either the AS/NZS 4284 or E2/VM1 methods and still failed unexpectedly, which suggests that improvements to the testing protocols are required. An experiment was designed to mimic the observed earthquake damage using bi-directional loading (discussed in Publication 4 of 4) and to identify improvements to the current testing protocol. In a similar way to pipes, the observational and test data was then used to develop a design prediction tool. For both pipes (Publication 3 of 4) and glazing systems (Publication 4 of 4), experimentation suggests that modifying the existing testing Standards would yield more realistic earthquake damage results. The research indicates that including a specific joint testing regime for pipes and positioning the glazing system in a specific location in the specimen would improve the relevant Standards with respect to seismic resilience of these systems. Improving seismic resilience in pipe joints and glazing systems would improve existing Council compliance pathways, which would potentially reduce the liability of damage claims against the government after an earthquake event. The developed design prediction tool, for both pipe and glazing systems, uses local data specific to the system being scrutinised, such as local geology, dimensional characteristics of the system, actual or predicted peak ground accelerations (both vertically and horizontally) and results of product-specific bi-directional testing. The design prediction tools would improve the accuracy of existing techniques used by forensic engineers examining the cause of failure after an earthquake and for lifeline analysts examining predictive earthquake damage scenarios.
In the aftermath of the 2010-2011 Canterbury earthquakes in New Zealand, the residual capacity and reparability of damaged reinforced concrete (RC) structures was an issue pertinent to building owners, insurers, and structural engineers. Three precast RC moment-resisting frame specimens were extracted during the demolition of the Clarendon Tower in Christchurch after sustaining earthquake damage. These specimens were subjected to quasi-static cyclic testing as part of a research program to determine the reparability of the building. It was concluded that the precast RC frames were able to be repaired and retrofitted to an enhanced strength capacity with no observed reduction in displacement capacity, although the frames with “shear-ductile” detailing exhibited less displacement ductility capacity and energy dissipation capacity than the more conventionally detailed RC frames. Furthermore, the cyclic test results from the earthquake-damaged RC frames were used to verify the predicted inelastic demands applied to the specimens during the 2010-2011 Canterbury earthquakes. https://www.concrete.org/publications/acistructuraljournal.aspx