
Photograph captioned by Fairfax, "Damage from the February 22nd earthquake in Christchurch. A message from the Beckenham Baptist Church on Colombo Street".
Photograph captioned by Fairfax, "Fred Arnesen from Beckenham Footwear and Engraving has had to move his business due to the earthquake damage to a much newer shop with higher rent".
Photograph captioned by Fairfax, "Fred Arnesen from Beckenham Footwear and Engraving has had to move his business due to the earthquake damage to a much newer shop with higher rent".
Photograph captioned by Fairfax, "Fred Arnesen from Beckenham Footwear and Engraving has had to move his business due to the earthquake damage to a much newer shop with higher rent".
A photograph of dancers performing in Stand Your Ground. A film is being projected onto the wall behind the dancers.
Photograph captioned by Fairfax, "Children ride their bikes past huge piles of liquefaction along Roxburgh Street in Beckenham. New Zealand farmers spent the morning clearing the liquefaction and making the road passable".
Photograph captioned by Fairfax, "Children ride their bikes past huge piles of liquefaction along Roxburgh Street in Beckenham. New Zealand farmers spent the morning clearing the liquefaction and making the road passable".
A video about Whare, a gift and homeware store which relocated several times after the 4 September 2010 earthquake. Whare originally had two stores, one in Beckenham, and another on Lichfield Street in the central city. Both stores were closed as a result of the 22 February 2011 earthquake. The store reopened temporarily in a garage and then in the Snowride Store on Lincoln Road. This video was part of The Press's 'Up and Running' series which showcases businesses which have stayed up and running despite the challenges posed by the 2010 and 2011 Canterbury earthquakes.
Photograph captioned by Fairfax, "The Christchurch City Council holding an emergency meeting at the Beckenham Service Centre in Colombo Street. Mayor Bob Parker is in the centre (white shirt) with CEO Tony Marriott beside him".
Photograph captioned by Fairfax, "The Christchurch City Council holding an emergency meeting at the Beckenham Service Centre in Colombo Street. Mayor Bob Parker is in the centre (white shirt) with CEO Tony Marriott beside him".
Photograph captioned by Fairfax, "Lousie Holder has set up her Beckenham Elite $10 Haircuts For All business in her ex-partner's garage due to earthquake damage at her shop. Pictured cutting the hair of Trevor Spriggs".
Photograph captioned by Fairfax, "Lousie Holder has set up her Beckenham Elite $10 Haircuts For All business in her ex-partner's garage due to earthquake damage at her shop. Pictured cutting the hair of Trevor Spriggs".
Photograph captioned by Fairfax, "Lousie Holder has set up her Beckenham Elite $10 Haircuts For All business in her ex-partner's garage due to earthquake damage at her shop. Pictured cutting the hair of Trevor Spriggs".
A photograph of dancers performing in Stand Your Ground. A film is being projected onto the wall behind the dancers, and their shadows are being cast onto the wall.
A photograph of dancers performing in Stand Your Ground. A film is being projected onto the wall behind the dancers, and their shadows are being cast onto the wall.
Photograph captioned by Fairfax, "Christchurch Earthquake. A massive 7.4 magnitude earthquake has hit Christchurch and the wider South Island, causing widespread damage, two serious injuries and power cuts to most of the city. Beckenham shops damaged in the quake".
Photograph captioned by Fairfax, "Christchurch Earthquake. A massive 7.4 magnitude earthquake has hit Christchurch and the wider South Island, causing widespread damage, two serious injuries and power cuts to most of the city. Beckenham shops damaged in the quake".
Photograph captioned by Fairfax, "Christchurch Earthquake. A massive 7.4 magnitude earthquake has hit Christchurch and the wider South Island, causing widespread damage, two serious injuries and power cuts to most of the city. Beckenham shops damaged in the quake".
A PDF copy of pages 162-163 of the book Christchurch: The Transitional City Pt IV. The pages document the transitional project 'Stand Your Ground'. Photos: Gap Filler
Spatial variations in river facies exerted a strong influence on the distribution of liquefaction features observed in Christchurch during the 2010-11 Canterbury Earthquake Sequence (CES). Liquefaction and liquefaction-induced ground deformation was primarily concentrated near modern waterways and areas underlain by Holocene fluvial deposits with shallow water tables (< 1 to 2 m). In southern Christchurch, spatial variations of liquefaction and subsidence were documented in the suburbs within inner meander loops of the Heathcote River. Newly acquired geospatial data, geotechnical reports and eye-witness discussions are compiled to provide a detailed account of the surficial effects of CES liquefaction and ground deformation adjacent to the Heathcote River. LiDAR data and aerial photography are used to produce a new series of original figures which reveal the locations of recurrent liquefaction and subsidence. To investigate why variable liquefaction patterns occurred, the distribution of surface ejecta and associated ground damage is compared with near-surface sedimentologic, topographic, and geomorphic variability to seek relationships between the near-surface properties and observed ground damages. The most severe liquefaction was concentrated within a topographic low in the suburb of St Martins, an inner meander loop of the Heathcote River, with liquefaction only minor or absent in the surrounding areas. Subsurface investigations at two sites in St Martins enable documentation of fluvial stratigraphy, the expressions of liquefaction, and identification of pre-CES liquefaction features. Excavation to water table depths (~1.5 m below the surface) across sand boils reveals multiple generations of CES liquefaction dikes and sills that cross-cut Holocene fluvial and anthropogenic stratigraphy. Based on in situ geotechnical tests (CPT) indicating sediment with a factor of safety < 1, the majority of surface ejecta was sourced from well-sorted fine to medium sand at < 5 m depth, with the most damaging liquefaction corresponding with the location of a low-lying sandy paleochannel, a remnant river channel from the Holocene migration of the meander in St Martins. In the adjacent suburb of Beckenham, where migration of the Heathcote River has been laterally confined by topography associated with the volcanic lithologies of Banks Peninsula, severe liquefaction was absent with only minor sand boils occurring closest to the modern river channel. Auger sampling across the suburb revealed thick (>1 m) clay-rich overbank and back swamp sediments that produced a stratigraphy which likely confined the units susceptible to liquefaction and prevented widespread ejection of liquefied material. This analysis suggests river migration promotes the formation and preservation of fluvial deposits prone to liquefaction. Trenching revealed the strongest CES earthquakes with large vertical accelerations favoured sill formation and severe subsidence at highly susceptible locations corresponding with an abandoned channel. Less vulnerable sites containing deeper and thinner sand bodies only liquefied in the strongest and most proximal earthquakes forming minor localised liquefaction features. Liquefaction was less prominent and severe subsidence was absent where lateral confinement of a Heathcote meander has promoted the formation of fluvial stratum resistant to liquefaction. Correlating CES liquefaction with geomorphic interpretations of Christchurch’s Heathcote River highlights methods in which the performance of liquefaction susceptibility models can be improved. These include developing a reliable proxy for estimating soil conditions in meandering fluvial systems by interpreting the geology and geomorphology, derived from LiDAR data and modern river morphology, to improve the methods of accounting for the susceptibility of an area. Combining geomorphic interpretations with geotechnical data can be applied elsewhere to identify regional liquefaction susceptibilities, improve existing liquefaction susceptibility datasets, and predict future earthquake damage.