One landscape colour digital photograph taken 22 February 2017 showing a commemorative note to, and photograph of, Andrew Bishop attached to an earthquake memorial trellis at the site of the former Canterbury Television building.
One landscape colour digital photograph taken 22 February 2017 showing a bouquet of flowers left at the site of the former Canterbury Television building by the Toyama Language School in memory of earthquake victims.
OPINION: Associate Professor MARK QUIGLEY, from the University of Canterbury's department of geological sciences, and Dr MATTHEW HUGHES, from its department of civil and natural resources engineering, survey the changing landscape of post-quake Christchurch.
One landscape colour digital photograph taken 22 February 2017 showing brass band members at the Canterbury Earthquake Memorial Service. Behind the band is a digital screen showing an image of flowers floating in the Avon River.
One landscape colour digital photograph taken 22 February 2017 showing Karen Bishop attaching a windmill to an earthquake memorial trellis in memory of her son Andrew Bishop at the site of the former Canterbury Television building.
One landscape colour digital photograph taken 22 February 2017 showing a windmill attached to an earthquake memorial trellis by Karen Bishop in memory of her son Andrew Bishop at the site of the former Canterbury Television building.
The word 'AFTERSHOCKS' appears printed across the Canterbury landscape. Text reads 'Canterbury from the air...' Refers to the earthquake of 4th September and the frequent aftershocks that continued for at least two weeks. Quantity: 1 digital cartoon(s).
Semi-circular quilt made from cotton, silk and bandage material to commemorate the 22 February 2011 earthquake. The quilt references Christchurch landscape features, buildings and soil profiles and displays 185 sewn crosses, eight facial profiles and a Harakeke (flax).
A video about the preparation for the 2012 Ellerslie Flower Show in Hagley Park. The video includes interviews with Xiaohua Li, an Architecture and Landscape Design student at Lincoln University, Dave Mee, the Ellerslie Flower Show Managing Director, and Leona Murahidy.
One landscape colour digital photograph taken 22 February 2017 showing a bouquet of flowers left at the site of the former Canterbury Television building by St John New Zealand in memory of earthquake victims and in appreciation of first responders.
In 1861, the city of Christchurch would have been virtually unrecognisable to a 21st century resident. Buildings were scattered sparsely throughout what is now the central business district and dirt roads and low fences traversed a landscape that was more grassland … Continue reading →
Rock mass defect controlled deep-seated landslides are widespread within the deeply incised landscapes formed in Tertiary soft rock terrain in New Zealand. The basal failure surfaces of deep-seated slope failures are defined by thin, comparatively weak and laterally continuous bedding parallel layers termed critical stratigraphic horizons. These horizons have a sedimentary origin and have typically experienced some prior tectonically induced shear displacement at the time of slope failure. The key controls on the occurrence and form of deep-seated landslides are considered in terms of rock mass defect properties and tectonic and climatic forcing. The selection of two representative catchments (in southern Hawke's Bay and North Canterbury) affected by tectonic and climatic forcing has shown that the spatial and temporal initiation of deep-seated bedrock landslides in New Zealand Tertiary soft rock terrain is a predictable rather than a stochastic process; and that deep-seated landslides as a mass wasting process have a controlling role in landscape evolution in many catchments formed in Tertiary soft rock terrain. The Ella Landslide in North Canterbury is a deep-seated (~85 m) translational block slide that has failed on a 5 - 10 mm thick, kaolinite-rich, pre-sheared critical stratigraphic horizon. The residual strength of this sedimentary horizon, (C'R 2.6 - 2.7 kPa, and Ѳ'R = 16 - 21°), compared to the peak strength of the dominant lithology (C' = 176 kPa, and Ѳ' = 37°) defines a high strength contrast in the succession, and therefore a critical location for the basal failure surface of deep-seated slope failures. The (early to mid Holocene) Ella Landslide debris formed a large landslide dam in the Kate Stream catchment and this has significantly retarded rates of mass wasting in the middle catchment. Numerical stability analysis shows that this slope failure would have most likely required the influence of earthquake induced strong ground motion and the event is tentatively correlated to a Holocene event on the Omihi Fault. The influence of this slope failure is likely to affect the geomorphic development of the catchment on a scale of 10⁴ - 10⁵ years. In deeply incised catchments at the southeastern margin of the Maraetotara Plateau, southern Hawke's Bay, numerous widespread deep-seated landslides have basal failure surfaces defined by critical stratigraphic horizons in the form of thin « 20 mm) tuffaceous beds in the Makara Formation flysch (alternating sandstone and mudstone units). The geometry of deep-seated slope failures is controlled by these regularly spaced (~70 m), very weak critical stratigraphic horizons (C'R 3.8 - 14.2 kPa, and Ѳ'R = 2 - 5°), and regularly spaced (~45 m) and steeply dipping (-50°) critical conjugate joint/fault sets, which act as slide block release surfaces. Numerical stability analysis and historical precedent show that the temporal initiation of deep-seated landslides is directly controlled by short term tectonic forcing in the form of periodic large magnitude earthquakes. Published seismic hazard data shows the recurrence interval of earthquakes producing strong ground motions of 0.35g at the study site is every 150 yrs, however, if subduction thrust events are considered the level of strong ground motion may be much higher. Multiple occurrences of deep-seated slope failure are correlated to failure on the same critical stratigraphic horizon, in some cases in three adjacent catchments. Failure on multiple critical stratigraphic horizons leads to the development of a "stepped" landscape morphology. This slope form will be maintained during successive accelerated stream incision events (controlled by long term tectonic and climatic forcing) for as long as catchments are developing in this specific succession. Rock mass defect controlled deep seated landslides are controlling catchment head progression, landscape evolution and hillslope morphology in the Hawke's Bay study area and this has significant implications for the development of numerical landscape evolution models of landscapes formed in similar strata. Whereas the only known numerical model to consider deep seated landslides as an erosion process (ZSCAPE) considers them as stochastic in time and space, this study shows that this could not be applied to a landscape where the widespread spatial occurrence of deep-seated landslides is controlled by rock mass defects. In both of the study areas for this project, and by implication in many catchments in Tertiary soft rock terrain, deep-seated landslides controlled by rock mass defect strength, spacing and orientation, and tectonic and climatic forcing have an underlying control on landscape evolution. This study quantifies parameters for the development of numerical landscape evolution models that would assess the role of specific parameters, such as uplift rates, incision rates and earthquake recurrence in catchment evolution in Tertiary soft rock terrain.
The 48hr Design Challenge, run by the Christchurch City Council and held at Lincoln University, provided an opportunity for Council to gain inspiration from the design and architecture industry, while testing the draft Central City Plan currently being developed. The Challenge was a response to the recent earthquakes in Christchurch and brought together local and international talent. A total of 15 teams took part in the Challenge, with seven people in each including engineers, planners, urban designers, architects and landscape architects, as well as one student on each team. The four sites within the Red Zone included the Cathedral Square and BNZ Building; 160 Gloucester Street; the Orion NZ Building at 203 Gloucester Street; and 90 Armagh Street, including the Avon River and Victoria Square. The fifth site, which sits outside the Red Zone, is the former Christchurch Women’s Hospital at 885 Colombo Street. This is team SoLA's entry for 160 Gloucester Street.
This thesis investigates landscape disturbance history in Westland since 1350 AD. Specifically, I test the hypothesis that large-magnitude regional episodes of natural disturbance have periodically devastated portions of the landscape and forest, and that these were caused by infrequent earthquakes along the Alpine Fault. Forest stand history reconstruction was used to determine the timing and extent of erosion and sedimentation events that initiated new forest cohorts in a 1412 ha study area in the Karangarua River catchment, south Westland. Over 85 % of the study area was disturbed sufficiently by erosion/sedimentation since 1350 AD to initiate new forest cohorts. During this time four episodes of catchment-wide disturbance impacted the study area, and these took place about 1825 AD ± 5 years (Ruera episode), 1715 AD ± 5 years (Sparkling episode), 1615 AD ± 5 years (McTaggart episode), and 1445 AD ± 15 years (Junction episode). The three most recent episodes disturbed 10 %, 35-40 % and 32-50 % respectively of the study area. The Junction episode disturbed at least 6 % of the study area, but elimination of evidence by more recent disturbances prevented an upper limit being defined. The three earliest episodes correspond to the date-ranges for three Alpine Fault earthquakes from geological data, and are the only episodes of disturbance within each date-range. An earthquake cause is also consistent with features of the disturbance record: large portions of the study area were disturbed, disturbance occurred on all types 'of landforms, and terrace surfaces were abandoned upstream of the Alpine Fault. On this basis erosion/sedimentation induced by Alpine Fault earthquakes has disturbed 14-20 % of the land surface in the study area per century. Storms and other non-seismic erosional processes have disturbed 3-4 % per century. To examine the importance of the Alpine Fault earthquakes to forest disturbance throughout Westland, I collated all available data on conifer stand age structures in the region and identified dates of disturbance events from 55 even-aged cohorts of trees. Three region-wide episodes of forest disturbance since 1350 AD were found in this sample, and these matched the three Alpine Fault earthquake-caused episodes found in the Karangarua. Forest disturbance at these times was widespread across Westland over at least 200 km from Paringa to Hokitika, and originated from both tree fall and erosion processes. This disturbance history can explain the long-observed regional conifer forest pattern in Westland, of a predominance of similar-sized stands of trees and a relative lack of small-sized (young) stands. The many similar-sized stands are a consequence of synchronous forest disturbance and re-establishment accompanying the infrequent Alpine Fault earthquakes, while the dominance of mature stands of trees and relative lack of young small-sized trees in stands is explained by the long lapsed time since the last Alpine Fault earthquake (c. 280 years). I applied the landscape disturbance history information to the existing geological data to reconstruct the paleoseismicity of the Alpine Fault since 1350 AD. Best estimates for the timing of the most recent three rupture events from these data are 1715 AD ± 5 years, 1615 AD ± 5 years and 1445 AD ± 15 years. Earthquake recurrence intervals were variable, ranging from about 100 years to at least 280 years (the lapsed time since the last event). All three events caused forest and geomorphic disturbance over at least a 200 km section of Fault between the Karangarua and Hokitika Rivers, and were probably single rupture events. Suppressions in cross dated tree-ring chronologies in the western South Island suggest that the last rupture occurred in 1717 AD, and extended as a single rupture from Haupiri to Fiordland, a distance along the Fault of 375 km.
One landscape colour digital photograph taken on 19 November 2011 looking east from Norwich Quay from approximately the base of Canterbury Street. Visible in the photograph are the partially deconstructed former Lyttelton Harbour Board Offices, the Holcim Cement Silos, the Oxford Street Railway Overbridge, Lyttelton Port of Christchurch's storag...
The Canterbury earthquake sequence of 2010-2011 wrought ruptures in not only the physical landscape of Canterbury and Christchurch’s material form, but also in its social, economic, and political fabrics and the lives of Christchurch inhabitants. In the years that followed, the widespread demolition of the CBD that followed the earthquakes produced a bleak landscape of grey rubble punctuated by damaged, abandoned buildings. It was into this post-earthquake landscape that Gap Filler and other ‘transitional’ organisations inserted playful, creative, experimental projects to bring life and energy back into the CBD. This thesis examines those interventions and the development of the ‘Transitional Movement’ between July 2013 and June 2015 via the methods of walking interviews and participant observation. This critical period in Christchurch’s recovery serves as an example of what happens when do-it-yourself (DIY) urbanism is done at scale across the CBD and what urban experimentation can offer city-making. Through an understanding of space as produced, informed by Lefebvre’s thinking, I explore how these creative urban interventions manifested a different temporality to orthodox planning and demonstrate how the ‘soft’ politics of these interventions contain the potential for gentrification and also a more radical politics of the city, by creating an opening space for difference
When a tragedy occurs of local or national scale throughout the world a memorial is often built to remember the victims, and to keep the tragedy fresh in the minds of generations with the conviction that this must not be repeated. Memorials to commemorate natural disasters very to the objective of a human induced tragedy in that future catastrophic events that affect the lives and livelihood of many citizens are sure to reoccur in countries that are geographically pre-disposed to the ravages of nature. This thesis examines memorial sites as case studies in New Zealand and Japan to explore the differences in how these two countries memorialise earthquakes, and tsunamis in the case of Japan, and whether there are lessons that each could learn from each other. In so doing, it draws largely on scholarly literature written about memorials commemorating war as little is written on memorials that respond to natural disasters. Visited case sites in both countries are analysed through multiple qualitative research methods with a broad view of what constitutes a memorial when the landscape is changed by the devastation of a natural disaster. How communities prepare for future events through changes in planning legislation, large scale infrastructure, tourism and preparedness for personal safety are issues addressed from the perspective of landscape architecture through spatial commemorative places. The intentions and meanings of memorials may differ but in the case of a memorial of natural disaster there is a clear message that is common to all. To reduce the severity of the number of deaths and level of destruction, education and preparedness for future events is a key aim of memorials and museums.
The magnitude 7.1 Christchurch earthquake broke off an enormous chunk of Castle Rock in the Port Hills which has tumbled down towards the Lyttelton tunnel. View from Morgan's Valley (-43.578037° 172.714828°).
A photograph of a floating installation on the Avon River. The installation consists of four chairs and a table situated on a grass-covered platform. It was created by students from Lincoln University's School of Landscape Architecture for Canterbury Tales, a carnivalesque procession and the main event of FESTA 2013.
One landscape colour digital photograph taken on 25 February 2011 showing earthquake damage on western side of Oxford Street, Lyttelton Taken from the footpath looking downhill from Lyttelton Main School. The buildings visible (from the foreground) are: London Street Restaurant; Bells Pharmacy; Maritime House (McKay - ISS Limited, Shipping Ag...
One landscape colour digital photograph taken on 25 February 2011 showing earthquake damage on eastern side of Oxford Street, Lyttelton Taken from the footpath looking downhill from opposite Lyttelton Main School. The Buildings visible are the premises of Moda Fotografica (former Library and Council Chambers), a private residence (former Libra...
One landscape colour digital photograph taken on 25 February 2011 showing earthquake damage to the premises of Ground Delicatessen on the corner of Canterbury and London Streets. The photograph shows the building's Canterbury Street façade. This building was initially built around 1864 as the Albion Hotel. After many modifications and changes ...
One landscape colour digital photograph taken on 25 February 2011 showing earthquake damage on Norwich Quay. The photograph is taken from approximately the intersection of Sutton and Norwich Quays looking east along Norwich Quay. The photograph also shows the eastern slope of Lyttelton and the damaged Timeball Station. Norwich Quay’s streetscap...
One landscape colour digital photograph taken on 25 February 2011 showing damage to the Lyttelton Historical Museum on the corner of Gladstone Quay and Donald Street. The photograph shows bracing and safety fencing installed after the September 2010 earthquakes. Architect Closed after the September 2010 earthquakes, the Lyttelton Museum buildin...
One landscape colour digital photograph taken on 6 September 2010 showing water table alteration in Hagley Park from near the Armagh Street bridge. Localised flooding was an almost immediate after effect of the 2010-2011 Canterbury earthquakes. Some areas of Christchurch were submerged, sometimes for several days, following the earthquake espec...
One landscape colour digital photograph taken on 6 September 2010 showing earthquake damage to a van caused by red bricks from the Christchurch Chinese Methodist Church, 165 Papanui Road. The Christchurch Chinese Methodist Church on Papanui Road sustained severe damage during the 4 September 2010 earthquake. Constructed from unreinforced red br...
A photograph of a floating installation titled The River on the Avon River. The installation consists of four chairs and a table situated on a grass-covered platform. It was created by students from Lincoln University's School of Landscape Architecturefor Canterbury Tales, a carnivalesque procession and the main event of FESTA 2013.
A photograph of a floating installation titled The River on the Avon River. The installation consists of four chairs and a table situated on a grass-covered platform. It was created by students from Lincoln University's School of Landscape Architecturefor Canterbury Tales, a carnivalesque procession and the main event of FESTA 2013.
One landscape colour digital photograph taken on 25 February 2011 showing earthquake damage to the Anglican Church of The Most Holy Trinity in Winchester Street Lyttelton. Photograph shows the bracing to the northern transept erected after the 4 September 2010 earthquake. Architect The earthquake damaged northern wall of the Anglican Church of t...
One landscape colour digital photograph taken on 25 February 2011 showing earthquake damage to the corner of Canterbury and London Streets. The photograph is taken from Canterbury Street looking down hill. The buildings visible are The Volcano Restaurant, the Lyttelton Library, the Lyttelton Working Mens' Club (The Loons), and the Royal Hotel (o...