Photograph captioned by Fairfax, "Aerial shot of the fault line that ruptured, causing Saturday's 7.1 earthquake. Locals walk across a paddock showing jagged scars from the fault line".
Photograph captioned by Fairfax, "Aerial shot of the fault line that ruptured, causing Saturday's 7.1 earthquake. The fault line runs across the paddocks and road and into the distance".
Photograph captioned by Fairfax, "Aerial shot of the fault line that ruptured, causing Saturday's 7.1 earthquake. The fault line runs across the paddocks and road and into the distance".
Photograph captioned by Fairfax, "Aerial shot of the fault line that ruptured causing Saturday's 7.1 earthquake. The fault line went in between the house and garage of this property".
Photograph captioned by Fairfax, "Aerial shot of the fault line that ruptured, causing Saturday's 7.1 earthquake. The fault line runs across the paddocks and road and into the distance".
Photograph captioned by Fairfax, "Aerial shot of the fault line that ruptured, causing Saturday's 7.1 earthquake. The fault runs through the front door and out the back of this property".
Photograph captioned by Fairfax, "Aerial pics of the fault line which ruptured causing Saturday's 7.1 earthquake. Intersection of Sandy Knolls and Wards Road with fault line marks across the tarseal".
Photograph captioned by Fairfax, "Aerial shot of the fault line that ruptured, causing Saturday's 7.1 earthquake. The fault runs through the front door and out the back of this property".
Photograph captioned by Fairfax, "Aerial shot of the fault line that ruptured, causing Saturday's 7.1 earthquake. The fault line went through the front door and out the back of this property".
Photograph captioned by Fairfax, "Aerial shot of the fault line that ruptured, causing Saturday's 7.1 earthquake. The fault line went through the front door and out the back of this property".
Rolleston/Burnham, South Island, NZ This used to be a perfectly straight and flat road!
Rolleston/Burnham, South Island, NZ It's been a busy few weeks! Was away on geology fieldtrips all the previous two weeks, then on Saturday morning 4th September 2010 at 4.35 am we got woken in Westport to a reasonable but very long earthquake. My husband was back in Christchurch at the time and texted me saying "are you ok?". I replied, "yes!"...
A team of earthquake geologists, seismologists and engineering seismologists from GNS Science, NIWA, University of Canterbury, and Victoria University of Wellington have collectively produced an update of the 2002 national probabilistic seismic hazard (PSH) model for New Zealand. The new model incorporates over 200 new onshore and offshore fault sources, and utilises newly developed New Zealand-based scaling relationships and methods for the parameterisation of the fault and subduction interface sources. The background seismicity model has also been updated to include new seismicity data, a new seismicity regionalisation, and improved methodology for calculation of the seismicity parameters. Background seismicity models allow for the occurrence of earthquakes away from the known fault sources, and are typically modelled as a grid of earthquake sources with rate parameters assigned from the historical seismicity catalogue. The Greendale Fault, which ruptured during the M7.1, 4 September 2010 Darfield earthquake, was unknown prior to the earthquake. However, the earthquake was to some extent accounted for in the PSH model. The maximum magnitude assumed in the background seismicity model for the area of the earthquake is 7.2 (larger than the Darfield event), but the location and geometry of the fault are not represented. Deaggregations of the PSH model for Christchurch at return periods of 500 years and above show that M7-7.5 fault and background source-derived earthquakes at distances less than 40 km are important contributors to the hazard. Therefore, earthquakes similar to the Darfield event feature prominently in the PSH model, even though the Greendale Fault was not an explicit model input.