There are council workers everywhere
At the end of the street where my daughter and family live.
None
Manchester Courts, a seven-storey building on the corner of Hereford and Manchester Streets, is a category one historic place built in 1905-1906 that up until the 7.1 earthquake, housed offices. News of the scheduled demolition provoked an emotional response from the people of Christchurch. UPDATE 14 October 2010: A group of residents is campaig...
None
None
None
These cracks would worry me but apparently the building is generally Ok.
Now demolished
This corner building ( Askos)has been demolished and the ones attached soon to ne
None
None
A view after the 7.1 magnitude earthquake in Christchurch.
Micro - electro - mechanical system (MEMS) based accelerometers are now frequently used in many different parts of our day - to - day lives. It is also increasingly being used for structural testing applications. Researchers have had res ervation of using these devices as they are relatively untested, but now with the wider adoption, it provides a much cheaper and more versatile tool for structural engineering researchers. A number of damaged buildings in the Christchurch Central Business District (CBD) were instrumented with a number of low - cost MEMS accelerometers after the major Christchurch earthquakes. The accelerometers captured extremely high quality building response data as the buildings experienced thousands of aftershocks. This d ata set was amongst one of only a handful of data set s available around the world which provides building response data subjected to real ground motion. Furthermore, due to technological advances, a much larger than usual number of accelerometers has been deployed making the data set one of the most comprehensive available. This data set is utilised to extract modal parameters of the buildings. This paper summarises the operating requirements and preference for using such accelerometers for experimental mod al analysis. The challenges for adapting MEMS based devices for successful modal parameters identification are also discussed.
The connections between walls of unreinforced masonry (URM) buildings and flexible timber diaphragms are critical building components that must perform adequately before desirable earthquake response of URM buildings may be achieved. Field observations made during the initial reconnaissance and the subsequent damage surveys of clay brick URM buildings following the 2010/2011 Canterbury, New Zealand earthquakes revealed numerous cases where anchor connections joining masonry walls or parapets with roof or floor diaphragms appeared to have failed prematurely. These observations were more frequent for adhesive anchor connections than for through-bolt connections (i.e. anchorages having plates on the exterior façade of the masonry walls). Subsequently, an in-field test program was undertaken in an attempt to evaluate the performance of adhesive anchor connections between unreinforced clay brick URM walls and roof or floor diaphragm. The study consisted of a total of almost 400 anchor tests conducted in eleven existing URM buildings located in Christchurch, Whanganui and Auckland. Specific objectives of the study included the identification of failure modes of adhesive anchors in existing URM walls and the influence of the following variables on anchor load-displacement response: adhesive type, strength of the masonry materials (brick and mortar), anchor embedment depth, anchor rod diameter, overburden level, anchor rod type, quality of installation and the use of metal mesh sleeve. In addition, the comparative performance of bent anchors (installed at an angle of minimum 22.5o to the perpendicular projection from the wall surface) and anchors positioned horizontally was investigated. Observations on the performance of wall-to-diaphragm connections in the 2010/2011 Canterbury earthquakes, a snapshot of the performed experimental program and the test results and a preliminary proposed pull-out capacity of adhesive anchors are presented herein. http://www.confer.co.nz/nzsee/ VoR - Version of Record
Seismic retrofitting of unreinforced masonry buildings using posttensioning has been the topic of many recent experimental research projects. However, the performance of such retrofit designs in actual design level earthquakes has previously been poorly documented. In 1984 two stone masonry buildings within The Arts Centre of Christchurch received posttensioned seismic retrofits, which were subsequently subjected to design level seismic loads during the 2010/2011 Canterbury earthquake sequence. These 26 year old retrofits were part of a global scheme to strengthen and secure the historic building complex and were subject to considerable budgetary constraints. Given the limited resources available at the time of construction and the current degraded state of the steel posttension tendons, the posttensioned retrofits performed well in preventing major damage to the overall structure of the two buildings in the Canterbury earthquakes. When compared to other similar unretrofitted structures within The Arts Centre, it is demonstrated that the posttensioning significantly improved the in-plane and out-of-plane wall strength and the ability to limit residual wall displacements. The history of The Arts Centre buildings and the details of the Canterbury earthquakes is discussed, followed by examination of the performance of the posttension retrofits and the suitability of this technique for future retrofitting of other historic unreinforced masonry buildings. http://www.aees.org.au/downloads/conference-papers/
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 …
Shortly after 4 o’clock this morning the whole of the South and a portion of the North Island was shaken by a violent shock of earthquake, the most severe experienced for more than 20 years……
This photographically produced postcard of Christchurch’s Provincial Government buildings, appearing twisted and warped, was a semi-humorous card sent out at Christmas after the Murchison ear…
The Anglican church of St. Michael and All the Angels, at 84 Oxford Terrace, stands on the site of the first church the Canterbury Association’s settlers built in 1851. Perhaps there a…
Earthquakes in Christchurch are not unusual events, we’ve been beset with them since European settlement began – and no doubt long before. What is most disturbing of all is that our Eur…
The town of Lyttelton on Saturday morning (15 August) was thrown into a state of great excitement owing to a most extraordinary rise and fall of the water in the harbour…
“William Wilson was formerly a cabbage dealer in Canterbury; but fourteen years ago he was poor, whereas now he is rich, a circumstance attributable to a lucky speculation in a piece of land …
“William Wilson was formerly a cabbage dealer in Canterbury; but fourteen years ago he was poor, whereas now he is rich, a circumstance attributable to a lucky speculation in a piece of land …
Sandwiched between the White Hart Hotel and the Universal Boot Depot at 223 and 225 High Street, was the business founded by Mr James Freeman, pastry cook and caterer. After browsing through Messrs…
The first part of the twentieth century was the heyday for the department store in New Zealand. The iconic department store, Hays, was a ‘household name’ in Christchurch from its incept…
“Jog on, jog on, the footpath way. And cheerily hent the stile, A merry heart goes all the way, Your sad tires in a mile.” — “A Winter’s Tale,” Sheakespeare. Such is t…
One of the most famous literary figures of the nineteenth century to visit Christchurch, was author, raconteur, journalist and social critic, Mark Twain. Tired and elderly, yet a force to be recko…
It is the start of the second week of June 1919 and New Zealand’s Prime Minister, William Massey and the Minister of Finance, Sir Joseph Ward, are in Paris awaiting the signing of the Peace Treaty …
German born colonist, Sir Julius von Haast, was an explorer specialising in geology. Amongst his many achievements was the founding of the Canterbury Museum. Born Johann Franz von Haast in 1822, in…