Detail of damage to the Cranmer Courts, where the gable ends of some walls have collapsed. Straps and wooden bracing protect against further damage.
Detail of damage to the Cranmer Courts, where the gable ends of some walls have collapsed. Straps and wooden bracing protect against further damage.
Detail of damage to the Cranmer Courts, where the gable ends of some walls have collapsed. Straps and wooden bracing protect against further damage.
Detail of damage to the Cranmer Courts, where the gable ends of some walls have collapsed. Straps and wooden bracing protect against further damage.
Damage to the Canterbury Provincial Chambers buildings. The roof of the stone chamber has completely collapsed, bringing down scaffolding on the outside of the building.
Shops around the Merivale Mall area have been cordoned off. Dust cloud coming from a collapsed building can be seen in the background.
Shops around the Merivale Mall area have been cordoned off. Dust cloud coming from a collapsed building can be seen in the background.
Shops around the Merivale Mall area have been cordoned off. Dust cloud coming from a collapsed building can be seen in the background.
Shops around the Merivale Mall area have been cordoned off. Dust cloud coming from a collapsed building can be seen in the background.
Rapid, reliable information on earthquake-affected structures' current damage/health conditions and predicting what would happen to these structures under future seismic events play a vital role in accelerating post-event evaluations, leading to optimized on-time decisions. Such rapid and informative post-event evaluations are crucial for earthquake-prone areas, where each earthquake can potentially trigger a series of significant aftershocks, endangering the community's health and wealth by further damaging the already-affected structures. Such reliable post-earthquake evaluations can provide information to decide whether an affected structure is safe to stay in operation, thus saving many lives. Furthermore, they can lead to more optimal recovery plans, thus saving costs and time. The inherent deficiency of visual-based post-earthquake evaluations and the importance of structural health monitoring (SHM) methods and SHM instrumentation have been highlighted within this thesis, using two earthquake-affected structures in New Zealand: 1) the Canterbury Television (CTV) building, Christchurch; 2) the Bank of New Zealand (BNZ) building, Wellington. For the first time, this thesis verifies the theoretically- and experimentally validated hysteresis loop analysis (HLA) SHM method for the real-world instrumented structure of the BNZ building, which was damaged severely due to three earthquakes. Results indicate the HLA-SHM method can accurately estimate elastic stiffness degradation for this reinforced concrete (RC) pinched structure across the three earthquakes, which remained unseen until after the third seismic event. Furthermore, the HLA results help investigate the pinching effects on the BNZ building's seismic response. This thesis introduces a novel digital clone modelling method based on the robust and accurate SHM results delivered by the HLA method for physical parameters of the monitored structure and basis functions predicting the changes of these physical parameters due to future earthquake excitations. Contrary to artificial intelligence (AI) based predictive methods with black-box designs, the proposed predictive method is entirely mechanics-based with an explicitly-understandable design, making them more trusted and explicable to stakeholders engaging in post-earthquake evaluations, such as building owners and insurance firms. The proposed digital clone modelling framework is validated using the BNZ building and an experimental RC test structure damaged severely due to three successive shake-table excitations. In both structures, structural damage intensifies the pinching effects in hysteresis responses. Results show the basis functions identified from the HLA-SHM results for both structures under Event 1 can online estimate structural damage due to subsequent Events 2-3 from the measured structural responses, making them valuable tool for rapid warning systems. Moreover, the digital twins derived for these two structures under Event 1 can successfully predict structural responses and damage under Events 2-3, which can be integrated with the incremental dynamic analysis (IDA) method to assess structural collapse and its financial risks. Furthermore, it enables multi-step IDA to evaluate earthquake series' impacts on structures. Overall, this thesis develops an efficient method for providing reliable information on earthquake-affected structures' current and future status during or immediately after an earthquake, considerably guaranteeing safety. Significant validation is implemented against both experimental and real data of RC structures, which thus clearly indicate the accurate predictive performance of this HLA-based method.
Damaged seating in the QEII stadium. The photographer comments, "This is the QEII stadium in Christchurch. During the 22 February earthquake the stadium was severely damaged and looks like it will be demolished. Anyone in Bay 3 would have no need of the toilet after this happened".
A Civil Defence personnel member speaking with an injured survivor from the collapsed Pyne Gould Corporation building near the base of the building.
A photograph of the earthquake damaged Persian Tea Rooms on Lincoln Road. Bricks and debris from the building's collapsed roof cover the footpath.
A photograph of the earthquake damaged Persian Tea Rooms on Lincoln Road. Bricks and debris from the building's collapsed roof cover the footpath.
The Untouched World shop on Worcester Street. Several chimneys have broken away from the side of the building and collapsed onto the footpath.
The collapsed rear wall of a building on Armagh Street. The bricks and timber from the wall have spilled onto the section's lawn.
A gap in the wall of an old building on Ferry Road in Woolston. Bricks have collapsed from the side of the building.
The cliff above a reserve beside Main Road in Clifton. Large sections of the cliff have collapsed onto the trees at its base.
Emergency personnel searching for people trapped in the collapsed Canterbury Television Building on Madras Street. Smoke can be seen rising from the ruins.
Emergency personnel searching for people trapped in the collapsed Canterbury Television Building on Madras Street. Smoke can be seen rising from the ruins.
Emergency personnel searching for people trapped in the collapsed Canterbury Television Building on Madras Street. Smoke can be seen rising from the ruins.
A photograph of the collapsed PGC Building, taken from Oxford Terrace across the Avon River. In the foreground is the Edmonds Band Rotunda.
A cliff above Redcliffs showing signs of recent collapse. A fence from one of the houses above is now jutting over the edge.
Blade Runners Hair Design on Hills Road in Edgeware. The veranda collapsed during the 4 September earthquake, bringing down the parapet as well.
A view looking north-east down Moorhouse Avenue with Scott's Motors on the left. The brick gable ends of the building have collapsed.
A photograph of the earthquake-damaged Persian Tea Rooms on Lincoln Road. Bricks and debris from the building's collapsed roof cover the footpath.
A photograph captioned by BeckerFraserPhotos, "A 'love heart' on the fence around the collapsed Holy Trinity Anglican Church, Winchester Street, Lyttelton".
Damage to a building on Lichfield Street. A large section of the side wall has collapsed, leaving the upper floor unsupported and sagging.
Damage to the church hall of St John the Baptist Church in Latimer Square. The gable end of the brick building has collapsed.
A collapsed wall above the windows of a brick house on Centaurus Road. Bricks have fallen into the building and left a hole.