A paper prepared for the Bulletin of the New Zealand Society for Earthquake Engineering, Vol. 44, no. 4, December 2011.
A banner reading, "Rise Up Christchurch", flying above the Christchurch Earthquake Memorial Service in Hagley Park.
A photograph of musicians performing on the riverbank of Oxford Terrace during Canterbury Tales. Canterbury Tales was created by Free Theatre Christchurch, and was the main event of FESTA 2013.
Asset management in power systems is exercised to improve network reliability to provide confidence and security for customers and asset owners. While there are well-established reliability metrics that are used to measure and manage business-as-usual disruptions, an increasing appreciation of the consequences of low-probability high-impact events means that resilience is increasingly being factored into asset management in order to provide robustness and redundancy to components and wider networks. This is particularly important for electricity systems, given that a range of other infrastructure lifelines depend upon their operation. The 2010-2011 Canterbury Earthquake Sequence provides valuable insights into electricity system criticality and resilience in the face of severe earthquake impacts. While above-ground assets are relatively easy to monitor and repair, underground assets such as cables emplaced across wide areas in the distribution network are difficult to monitor, identify faults on, and repair. This study has characterised in detail the impacts to buried electricity cables in Christchurch resulting from seismically-induced ground deformation caused primarily by liquefaction and lateral spread. Primary modes of failure include cable bending, stretching, insulation damage, joint braking and, being pulled off other equipment such as substation connections. Performance and repair data have been compiled into a detailed geospatial database, which in combination with spatial models of peak ground acceleration, peak ground velocity and ground deformation, will be used to establish rigorous relationships between seismicity and performance. These metrics will be used to inform asset owners of network performance in future earthquakes, further assess component criticality, and provide resilience metrics.
The development of cost effective and minimally-invasive seismic retrofit techniques is required for clay brick unreinforced masonry (URM) buildings because of their poor performance in past earthquakes. A laboratory-based experimental program was implemented to address this need, having well-defined but artificial boundary conditions, and utilising constituent construction materials that replicated the characteristics of masonry found in historic URM buildings. The purpose of this experimental program was to investigate the performance of near-surface mounted (NSM) carbon fibre reinforced polymer (CFRP) strips as a seismic retrofit solution for improving the out-of-plane performance of walls in URM buildings. In the experimental testing program nine masonry beams and five full-scale masonry walls were tested. Details of the design methodology for flexural retrofit of URM walls using the NSM CFRP retrofit technique and laboratory test results are reported. The results of the experimental tests confirmed that the NSM CFRP retrofit technique is a minimally-invasive option for seismic strengthening of URM walls to resist out-of-plane earthquake induced lateral forces. Two recent case-study projects that implemented the NSM CFRP technique are also briefly presented http://www.journals.elsevier.com/engineering-structures/ AM - Accepted Manuscript
A photograph of a band playing on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a band playing on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a band playing on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a singer on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a band playing on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a performer at the 'Sound Cone' project at LUXCITY.
A photograph of a musician on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a performer at the 'Sound Cone' project at LUXCITY.
A photograph of a band playing on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a performer at the 'Sound Cone' project at LUXCITY.
A photograph of a singer on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a band playing on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a musician on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a musician on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a singer on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a musician on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a performer at the 'Sound Cone' project at LUXCITY.
A photograph of a performer at the 'Sound Cone' project at LUXCITY.
A photograph of musicians on stage in the 'Sound Cone' space at LUXCITY.
A photograph of a performer at the 'Sound Cone' project at LUXCITY.
AIRCDRE Howse, CDRE Wayne Burroughs and AVM Peter Stockwell at the Christchurch Earthquake Memorial Service in Hagley Park.
A photograph of a performer at the 'Sound Cone' project at LUXCITY.
A plan which defines the framework for performance measurement to align SCIRT with the objectives from the Alliance Agreement objectives. The first version of this plan was produced on 20 August 2011.
Members of the public singing "How Great Thou Art" at the Christchurch Earthquake Memorial Service in Hagley Park.
A photograph of a singer on stage in the 'Sound Cone' space at LUXCITY.