After the September, 1888 earthquake centred in Hanmer caused extensive damage to the Christchurch cathedral, the government geologist, Alexander McKay was sent out to review the land damage. This …
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This paper describes the pounding damage sustained by buildings in the February 2011 Christchurch earthquake. Approximately 6% of buildings in Christchurch CBD were observed to have suffered some form of serious pounding damage. Typical and exceptional examples of building pounding damage are presented and discussed. Almost all building pounding damage occurred in unreinforced masonry buildings, highlighting their vulnerability to this phenomenon. Modern buildings were found to be vulnerable to pounding damage where overly stiff and strong ‘flashing’ components were installed in existing building separations. Soil variability is identified as a key aspect that amplifies the relative movement of buildings, and hence increases the likelihood of pounding damage. Building pounding damage is compared to the predicted critical pounding weaknesses that have been identified in previous analytical research.
This paper describes the pounding damage sustained by buildings in the February 2011 Christchurch earthquake. Approximately 6% of buildings in Christchurch CBD were observed to have suffered some form of serious pounding damage. Typical and exceptional examples of building pounding damage are presented and discussed. Almost all building pounding damage occurred in unreinforced masonry buildings, highlighting their vulnerability to this phenomenon. Modern buildings were found to be vulnerable to pounding damage where overly stiff and strong ‘flashing’ components were installed in existing building separations. Soil variability is identified as a key aspect that amplifies the relative movement of buildings, and hence increases the likelihood of pounding damage. Building pounding damage is compared to the predicted critical pounding weaknesses that have been identified in previous analytical research.
Shows a fish wondering about the difference between an insurer delaying earthquake-damage settlements and a scavenging groper. Context: refers to the unacceptable and hugely damaging delays in the provision of earthquake damage settlements by insurance companies after the Christchurch earthquakes of 2010 and 2011. Quantity: 1 digital cartoon(s).
Website dedicated to the reconstruction of the Cathedral damaged in the 2010 and 2011 Christchurch earthquakes.
Following the 22 February 2011 Christchurch earthquake a comprehensive damage survey of the unreinforced masonry (URM) building stock of Christchurch city, New Zealand was undertaken. Because of the large number of aftershocks associated with both the 2011 Christchurch earthquake and the earlier 4 September 2010 Darfield earthquake, and the close proximity of their epicentres to Christchurch city, this earthquake sequence presented a unique opportunity to assess the performance of URM buildings and the various strengthening methods used in New Zealand to increase the performance of these buildings in earthquakes. Because of the extent of data that was collected, a decision was made to initially focus exclusively on the earthquake performance of URM buildings located in the central business district (CBD) of Christchurch city. The main objectives of the data collection exercise were to document building characteristics and any seismic strengthening methods encountered, and correlate these attributes with observed earthquake damage. In total 370 URM buildings in the CBD were surveyed. Of the surveyed buildings, 62% of all URM buildings had received some form of earthquake strengthening and there was clear evidence that installed earthquake strengthening techniques in general had led to reduced damage levels. The procedure used to collect and process information associated with earthquake damage, general analysis and interpretation of the available survey data for the 370 URM buildings, the performance of earthquake strengthening techniques, and the influence of earthquake strengthening levels on observed damage are reported within. http://15ibmac.com/home/
A photograph showing earthquake damaged homes in Dallington, following the series of earthquakes in Christchurch.
The destruction of the Radio Network building in Christchurch has prompted hopes that explosive demolition could be used to bring down other earthquake-damaged buildings.
The downpours have added yet another problem for Christchurch residents living in earthquake-stricken homes.
A photograph showing earthquake damage in a Dallington resident's home, following the series of earthquakes in Christchurch.
A photograph showing earthquake damage in a Dallington resident's home, following the series of earthquakes in Christchurch.
A photograph showing earthquake damage in a Dallington resident's home, following the series of earthquakes in Christchurch.
A photograph showing earthquake damage in a Dallington resident's home, following the series of earthquakes in Christchurch.
Plywood wall on a damaged house in Quinns Road, Shirley, Christchurch. File reference: CCL-2012-05-10-Around-Shirley-May-2012 DSC_02849.JPG From the collection of Christchurch City Libraries.
Plywood wall on a damaged house in Quinns Road, Shirley, Christchurch. File reference: CCL-2012-05-10-Around-Shirley-May-2012 DSC_02850.JPG From the collection of Christchurch City Libraries.
Christ Church Cathedral has been granted a stay of execution after a High-Court ruling today to stop the planned demolition of the earthquake-damaged Christchurch central landmark.
Helicopter Flight over Christchurch New Zealand
Helicopter Flight over Christchurch New Zealand
Helicopter Flight over Christchurch New Zealand
Helicopter Flight over Christchurch New Zealand
Helicopter Flight over Christchurch New Zealand
Due to the 7.1 earthquake on 4th September 2010 and then the following earthquakes Godley House has suffered severe damage. Godley house was built in 1880 by Harvey Hawkins - see www.godleyhouse.co.nz/
An entry from Roz Johnson's blog for 8 June 2012 entitled, "Christchurch Through New Eyes".
The 22 February 2011, Mw6.2 Christchurch earthquake is the most costly earthquake to affect New Zealand, causing an estimated 181 fatalities and severely damaging thousands of residential and commercial buildings. This paper presents a summary of some of the observations made by the NSF-sponsored GEER Team regarding the geotechnical/geologic aspects of this earthquake. The Team focused on documenting the occurrence and severity of liquefaction and lateral spreading, performance of building and bridge foundations, buried pipelines and levees, and significant rockfalls and landslides. Liquefaction was pervasive and caused extensive damage to residential properties, water and wastewater networks, high-rise buildings, and bridges. Entire neighborhoods subsided, resulting in flooding that caused further damage. Additionally, liquefaction and lateral spreading resulted in damage to bridges and to stretches of levees along the Waimakariri and Kaiapoi Rivers. Rockfalls and landslides in the Port Hills damaged several homes and caused several fatalities.
12th April 2012 Demolition of Crowne Plaza/Park Royal Hotel due to damage from 22nd February 2011 earthquake and subsequent aftershocks
12th April 2012 Demolition of Crowne Plaza/Park Royal Hotel due to damage from 22nd February 2011 earthquake and subsequent aftershocks
12th April 2012 Demolition of Crowne Plaza/Park Royal Hotel due to damage from 22nd February 2011 earthquake and subsequent aftershocks
12th April 2012 Demolition of Crowne Plaza/Park Royal Hotel due to damage from 22nd February 2011 earthquake and subsequent aftershocks
12th April 2012 Demolition of Crowne Plaza/Park Royal Hotel due to damage from 22nd February 2011 earthquake and subsequent aftershocks