Damaged pavement on the Williams Street bridge in Kaiapoi. The concrete abutment has risen during the earthquake, forcing its way through the pavement of the footpath into the open.
Damaged pavement on the Williams Street bridge in Kaiapoi. The concrete abutment has risen during the earthquake, forcing its way through the pavement of the footpath into the open.
A photograph of a Nero playing while Rome burns, painted on a concrete block in a retaining wall. The photograph is captioned by BeckerFraserPhotos, "Cunningham Terrace, Lyttelton".
A photograph of one side of the house at 432 Oxford Terrace. The hedges in front have begun to overgrow and weeds are growing in between the concrete pavers.
Damage to a car parking building on Lichfield Street. Part of the concrete wall has crumbled, exposing steel reinforcing rods within, and damaging an artwork painted on the wall.
Damage to a house in Redcliffs. The chimney is still intact, but is leaning away from the house at an extreme angle, and concrete blocks have fallen from the walls.
A pdf copy of a PowerPoint presentation prepared for the Australia New Zealand Geotechnical Engineering Conference.
A paper prepared for the Bulletin of the New Zealand Society for Earthquake Engineering, Vol. 44, no. 4, December 2011.
The vacant lot left after the demolition of St. John's Anglican Church on Latimer Square. On site is a shipping container, and next to it looks like a pile of recyclable concrete pieces.
A group of people inspect the damaged rowing club buildings at Kerrs Reach. A large gap has appeared between two concrete slabs beside the building, where the land has slumped towards the river.
A concrete-block fence has been spray painted after the building was cleared by a USAR team. This system was used following the February earthquake to mark buildings that have been checked.
A concrete-block fence has been spray painted after the building was cleared by a USAR team. This system was used following the February earthquake to mark buildings that have been checked.
A concrete-block fence has been spray painted after the building was cleared by a USAR team. This system was used following the February earthquake to mark buildings that have been checked.
A concrete-block fence has been spray painted after the building was cleared by a USAR team. This system was used following the February earthquake to mark buildings that have been checked.
A concrete-block fence has been spray painted after the building was cleared by a USAR team. This system was used following the February earthquake to mark buildings that have been checked.
The recent earthquakes in Christchurch have made it clear that issues exist with current RC frame design in New Zealand. In particular, beam elongation in RC frame buildings was widespread and resulted in numerous buildings being rendered irreparable. Design solutions to overcome this problem are clearly needed, and the slotted beam is one such solution. This system has a distinct advantage over other damage avoidance design systems in that it can be constructed using current industry techniques and conventional reinforcing steel. As the name suggests, the slotted beam incorporates a vertical slot along part of the beam depth at the beam-column interface. Geometric beam elongation is accommodated via opening and closing of these slots during seismically induced rotations, while the top concrete hinge is heavily reinforced to prevent material inelastic elongation. Past research on slotted beams has shown that the bond demand on the bottom longitudinal reinforcement is increased compared with equivalent monolithic systems. Satisfying this increased bond demand through conventional means may yield impractical and economically less viable column dimensions. The same research also indicated that the joint shear mechanism was different to that observed within monolithic joints and that additional horizontal reinforcement was required as a result. Through a combination of theoretical investigation, forensic analysis, and database study, this research addresses the above issues and develops design guidelines. The use of supplementary vertical joint stirrups was investigated as a means of improving bond performance without the need for non-standard reinforcing steel or other hardware. These design guidelines were then validated experimentally with the testing of two 80% scale beam-column sub-assemblies. The revised provisions for bond within the bottom longitudinal reinforcement were found to be adequate while the top longitudinal reinforcement remained nominally elastic throughout both tests. An alternate mechanism was found to govern joint shear behaviour, removing the need for additional horizontal joint reinforcement. Current NZS3101:2006 joint shear reinforcement provisions were found to be more than adequate given the typically larger column depths required rendering the strut mechanism more effective. The test results were then used to further refine design recommendations for practicing engineers. Finally, conclusions and future research requirements were outlined.
The MedLab building on Kilmore Street. Many of the windows are open or have been broken. Inside, ceiling tiles are missing and swaths of fabric hang from concrete beams.
A damaged property on Avonside Drive. Cracks can be seen running through the lawn. A woman is standing on a slab of concrete that has been raised by the earthquake.
A photograph of a flying pig painted on a concrete block in a retaining wall. The photograph is captioned by BeckerFraserPhotos, "Decorated retaining wall in Cunningham Terrace, Lyttelton".
A photograph of graffiti reading, "City Council cares, yeah right", painted on a concrete block in a retaining wall. The photograph is captioned by BeckerFraserPhotos, "Cunningham Terrace, Lyttelton".
Volunteers using a crane to lay down slabs of concrete on the site of the demolished Crowne Plaza hotel. These slabs will serve as the floor of the Pallet Pavilion.
The entrance to the central Library on Gloucester Street has been boarded up and USAR codes have been spray-painted on the concrete pillar. A 'Library open' sign remains outside.
A photograph of a blue moon painted on a concrete block in a retaining wall. The photograph is captioned by BeckerFraserPhotos, "Decorated retaining wall in Cunningham Terrace, Lyttelton".
Photograph captioned by BeckerFraserPhotos, "Demolition site of Allan McLean building, corner of Colombo Street and Oxford Terrace".
Workers inspecting the badly damaged Redcliffs Scout Hall. Large concrete slabs have fallen inwards from one wall. The photographer comments, "This building was badly damaged in the February quake but now close to collapse".
Damage to a house in Richmond. Part of a concrete patio has slumped, leaving large cracks. In the background, cracks are visible in the brickwork of the house. The photographer comments, "More patio cracks".
A photograph of the corner of Armagh Street and Oxford Terrace. Fencing and concrete blocks have been placed across Armagh Street. The Forsyth Barr building can be seen in the distance.
A photograph of the corner of Armagh Street and Oxford Terrace. Fencing and concrete blocks have been placed across Armagh Street. The Forsyth Barr building can be seen in the distance.
High demolition rates were observed in New Zealand after the 2010-2011 Canterbury Earthquake Sequence despite the success of modern seismic design standards to achieve required performance objectives such as life safety and collapse prevention. Approximately 60% of the multi-storey reinforced concrete (RC) buildings in the Christchurch Central Business District were demolished after these earthquakes, even when only minor structural damage was present. Several factors influenced the decision of demolition instead of repair, one of them being the uncertainty of the seismic capacity of a damaged structure. To provide more insight into this topic, the investigation conducted in this thesis evaluated the residual capacity of moderately damaged RC walls and the effectiveness of repair techniques to restore the seismic performance of heavily damaged RC walls. The research outcome provided insights for developing guidelines for post-earthquake assessment of earthquake-damaged RC structures. The methodology used to conduct the investigation was through an experimental program divided into two phases. During the first phase, two walls were subjected to different types of pre-cyclic loading to represent the damaged condition from a prior earthquake, and a third wall represented a repair scenario with the damaged wall being repaired using epoxy injection and repair mortar after the pre-cyclic loading. Comparisons of these test walls to a control undamaged wall identified significant reductions in the stiffness of the damaged walls and a partial recovery in the wall stiffness achieved following epoxy injection. Visual damage that included distributed horizontal and diagonal cracks and spalling of the cover concrete did not affect the residual strength or displacement capacity of the walls. However, evidence of buckling of the longitudinal reinforcement during the pre-cyclic loading resulted in a slight reduction in strength recovery and a significant reduction in the displacement capacity of the damaged walls. Additional experimental programs from the literature were used to provide recommendations for modelling the response of moderately damaged RC walls and to identify a threshold that represented a potential reduction in the residual strength and displacement capacity of damaged RC walls in future earthquakes. The second phase of the experimental program conducted in this thesis addressed the replacement of concrete and reinforcing steel as repair techniques for heavily damaged RC walls. Two walls were repaired by replacing the damaged concrete and using welded connections to connect new reinforcing bars with existing bars. Different locations of the welded connections were investigated in the repaired walls to study the impact of these discontinuities at the critical section. No significant changes were observed in the stiffness, strength, and displacement capacity of the repaired walls compared to the benchmark undamaged wall. Differences in the local behaviour at the critical section were observed in one of the walls but did not impact the global response. The results of these two repaired walls were combined with other experimental programs found in the literature to assemble a database of repaired RC walls. Qualitative and quantitative analyses identified trends across various parameters, including wall types, damage before repair, and repair techniques implemented. The primary outcome of the database analysis was recommendations for concrete and reinforcing steel replacement to restore the strength and displacement capacity of heavily damaged RC walls.
Following the 2010–2011 Canterbury earthquakes, a renewed focus has been directed across New Zealand to the hazard posed by the country‘s earthquake-vulnerable buildings, namely unreinforced masonry (URM) and reinforced concrete (RC) buildings with potentially nonductile components that have historically performed poorly in large earthquakes. The research reported herein was pursued with the intention of addressing several recommendations made by the Canterbury Earthquakes Royal Commission of Inquiry which were classified into the following general categories: Identification and provisional vulnerability assessment of URM and RC buildings and building components; Testing, assessment, and retrofitting of URM walls loaded out-of-plane, with a particular focus on highly vulnerable URM cavity walls; Testing and assessment of RC frame components, especially those with presumably non-ductile reinforcement detailing; Portfolio management considering risks, regulations, and potential costs for a portfolio that includes several potentially earthquake-vulnerable buildings; and Ongoing investigations and proposed research needs. While the findings from the reported research have implications for seismic assessments of buildings across New Zealand and elsewhere, an emphasis was placed on Auckland given this research program‘s partnership with the Auckland Council, the Auckland region accounting for about a third each of the country‘s population and economic production, and the number and variety of buildings within the Auckland building stock. An additional evaluation of a historic building stock was carried out for select buildings located in Hawke‘s Bay, and additional experimental testing was carried out for select buildings located in Hawke‘s Bay and Christchurch.