The Department of Geography, Northumbria University, seeks to appoint a PhD student to work on Holocene sea-level change and palaeoseismicity in Chile. Funding is available to UK and international students. The closing date is 20th January 2017. Read on for more details about the position.
Welcome to QH, where you'll find info on earthquakes and tsunamis. The blog mainly focuses on palaeoseismology, the scientific field concerned with finding evidence of past seismic events. Researching earthquakes and tsunamis that have already happened may allow us to better understand future hazards. Maintained by Earth Scientist and palaeoseismologist Dr Ed Garrett
Showing posts with label Earthquake. Show all posts
Showing posts with label Earthquake. Show all posts
Tuesday, 28 June 2016
Thursday, 23 June 2016
A tsunami in Belgium?
In the wake of a series of devastating tsunamis in the Indian Ocean, Chile and Japan, Cecile Baeteman was asked whether such an event could also happen in the North Sea. Prof. Baeteman is an expert in sea-level change and coastal processes at the Royal Belgian Institute of Natural Sciences. Here are her thoughts on whether tsunamis pose a threat to coasts of the UK, France and, in particular, Belgium:Sunday, 22 May 2016
On this day in 1960
| A sand layer deposited by the 1960 tsunami, deposited on top of and later covered by peat |
Today, 22nd May 2016, marks the 56th anniversary of the 1960 Great Chilean earthquake. With a magnitude estimated at 9.5, this still stands as the largest instrumentally documented earthquake worldwide.
Palaeoseismologists have sought to characterise the geological evidence for this earthquake and the subsequent tsunami in a range of different settings.
Saturday, 30 January 2016
Thailand tsunami fieldwork
Evelien Boes and I are currently in Thailand. For the next two weeks we'll be investigating tsunami deposits in coastal locations in Phang Nga Province with Kruawun Jankaew from Chulalongkorn University. Evelien will be blogging about our trip over at the UGent Fieldbook. Her first post covers the 2004 Indian Ocean tsunami and includes some chilling videos taken in the area in which we will be working.Monday, 4 January 2016
Vulnerable Coastal Areas
| Philipp Kempf, Renard Centre of Marine Geology, Ghent University, presents on his research into tsunamis in Chile |
Labels:
Chile,
Earthquake,
Japan,
Meeting,
Paleoseismology,
Tsunami
Thursday, 17 September 2015
Magnitude 8.3 earthquake, central Chile, 16th September 2015
![]() |
| USGS Shakemap: available here |
The earthquake occurred along the Chilean Subduction Zone, a fault between the Nazca and South American Plates. The Nazca Plate subducts beneath South America, with the strain that accumulates over time episodically released during earthquakes. Great subduction zone earthquakes such as this are accompanied by intense shaking that may last several minutes. They also frequently generate tsunamis, which may be damaging both close to the source and across ocean basins. Wave heights of over 4m have been reported in Chile. The Pacific Tsunami Warning Centre suggests large waves are unlikely for most Pacific countries, however Chile and French Polynesia remain on alert for waves exceeding 1m.
Friday, 4 September 2015
So, what happens when a giant tsunami inundates coastal lakes?
This blog post is by Philipp Kempf, PhD student at Ghent University, who writes about his recently published Sedimentary Geology paper on tsunami deposits in coastal lakes in south central Chile. Philipp is now on twitter too, tweeting as @TsunamiPhil.
Saturday, 25 April 2015
Pan Pacific Palaeoseismology symposium
Labels:
Alaska,
Chile,
Earthquake,
Japan,
Meeting,
Paleoseismology,
Tsunami
Wednesday, 2 April 2014
The 1877 and 2014 earthquakes
We provided a brief introduction to the 1st April 2014 Iquique earthquake earlier. It's struck the Northern Chilean (or Iquique) seismic gap, an area that hasn't ruptured in a major megathrust earthquake since 1877 (though a magnitude 7.7 earthquake did rupture a deeper section of the interface in 2007). GPS data published in 2004 suggested the Nazca and South American plates were fully coupled, with none of the plate convergence being offset by slip between the plates. An update just last year identified three zones of high coupling - the Camarones, Loa and Paranal segments - separated by weaker zones. Potentially any of these segments would individually be capable of producing an earthquake of the size of the one seen yesterday. The authors
Magnitude 8.2 earthquake north of Iquique, Chile, April 2014
A major earthquake struck the north of Chile yesterday (1st April 2014), with intense shaking felt in the cities of Iquique and Arica. Less intense shaking was also felt across northern Chile and in Bolivia, Peru, Brazil and Costa Rica..The USGS maintains 'did you feel it?' pages, where anyone can report shaking that they have experienced. Here's the page for the 1st April earthquake: Did you feel it?. Initial reports placed the magnitude in the region of 8.0, with subsequent analysis upgrading this to 8.2. This USGS page will continue to be updated as further information on the earthquake becomes available. For comparison, the 2010 Maule (Chile) earthquake measured 8.8, the 2011 Tohoku (Japan) earthquake registered
Thursday, 6 February 2014
Recent magazine article highlighting our work
While we've been busy on fieldwork and analysing the sediments we've collected, we're also keen to keep publishing our findings and updating people on where we're at with our research. Back in September our first academic paper on Chilean earthquakes was published in Quaternary Science Reviews. This month we've written an article in International Innovation magazine, produced by Research Media Ltd. The Environment issue of this magazine disseminates current global environmental issues to the wider
Coring, coring, coring (+Videos)
Much of our last field season was spent coring tidal marsh sediments. See previous posts for more details on what we do both in the field and back in the labs. In order to sample sediments several metres below the ground surface we use a sediment corer - either a gouge corer (for reasonably consolidated sediments) or a Russian corer (in peats or more unconsolidated sediments). Here is a short video showing us using a gouge corer at Chaihuin, with the invaluable help of Bill Austin from St Andrews University.
Labels:
Chile,
Coring,
Earthquake,
Fieldwork,
Tsunami
Location:
Chaihuín, Los Ríos Region, Chile
Tuesday, 14 January 2014
Fieldwork in photos
We're in Valdivia at the moment, which means reliable internet, something that we've been without for the last week. We've been at Pucatrihue and Llico, coring marshes in our search for evidence of predecessors of the 1960 Chilean earthquake. Here's a quick photo roundup.
Labels:
Chile,
Earthquake,
Fieldwork,
Llico,
Pucatrihue,
Tsunami
Location:
Valdivia, Los Ríos Region, Chile
Sunday, 12 January 2014
Back in Chile
A year on from our last field season, and we’re back in
Chile continuing our search for evidence of earthquakes and tsunamis. So far we’ve
visited two new sites – Pucatrihue (west of Osorno) and Llico (3 hours further
south). We are working on the salt marshes at these sites and are interested in
the sequence of sediments which have accumulated in the marshes over time. As
the environment (or elevation of the land relative to the sea) changes, the
nature of the sediment which is deposited changes. We’re particularly interested
in where we find a very sudden or sharp change in sediments; where we see the
Labels:
Chile,
Earthquake,
Fieldwork,
Llico,
Pucatrihue,
Tsunami
Sunday, 23 June 2013
Our new paper on Chilean earthquakes
Our first paper on Chilean earthquakes is now available online in the journal Quaternary Science Reviews. The paper is open access, so the full text is free for anyone to read.
The work we present sets out how we can use diatoms, microscopic algae, to quantify the changes in land level which occur during plate boundary earthquakes. We're interested in reconstructing these land level changes as they may provide a way of working out how big past earthquakes have been. Others have used similar approaches to identify and increase understanding of the threat posed by large earthquakes in Alaska, Japan and along the west coast of the United States. We apply the techniques to Chile, demonstrating that estimates of land level change using diatoms are accurate and useful.
Tuesday, 29 January 2013
Ed heads North
| Ben, Daria and Isobel investigate the stratigraphy |
Following Emma's departure back to the UK, I headed north from Valdivia for part 2 of my field season in Chile. Three buses, each slower and more decrepit than the last took me to Temuco, then Carahue and finally Tirua. Here, I met up with Marco Cisternas again, along with Lisa Ely, Alan Nelson, Rob Wesson and Isobel Hong from the US. Ben Horton and Daria Nikitina swelled our numbers to 8 when they arrived yesterday.
We've spent the last four days working at Quidico, a small river valley 20 minutes drive north of Tirua. We've been digging deep pits, cleaning river bank exposures and taking thin columns of sediment using a coring device to try to understand the sequence of sediments that has been laid down at the site. The presence of sand layers may suggest inundation by tsunamis.
Location:
Tirúa, Biobío Region, Chile
Tuesday, 22 January 2013
Tiny bits of rock and very small living things...
| Taking great care to not leave any trace of where we've sampled on the marsh! |
We found an excellent marsh to work on, which allowed us to take lots of samples to help us properly understand the present day environment. In our work we need a sound understanding of what is happening today to be able to interpret what happened in the past. We take small samples along a transect across the marsh from the mudflat exposed at low tide, across the low marsh, high marsh, and up to where freshwater vegetation grows. We look at how diatom communities (small microscopic single-celled algae) change across these different zones as the amount of tidal inundation decreases the further you get from the sea. We mainly find marine diatom species in mudflat samples and freshwater diatoms in the high marsh samples. Then when we look at our sediment cores from the past, if we find lots of marine diatoms we interpret the environment at this time was most like the present day mudflat. From this we are able to reconstruct how the land level has changed through time.
| Taking a modern sample from the low marsh |
![]() |
| Freshwater diatom of the Pinnularia genus (about half the width of a human hair - thanks to Melanie Leng for giving this comparison!) |
Labels:
Chile,
Diatoms,
Earthquake
Thursday, 17 January 2013
Our research using only common words
Here's a summary of our past and present research in Chile using only the 1000 most common words used in the English language:
When the ground shakes a lot it can kill many people. Ground shaking can also form very big waves of water which cover lots of the land, and kill more people. It is important to understand when and where this happens so that we can make people safer in years to come.
When the shaking happens the land can go up and down. Some places change from being high up before the shaking to being lower down after. Other places change from low down to higher up. We look for things that can tell us how and when the land has changed in the past and when waves have covered the land. To do this we look at tiny bits of rock and very small living things. We have found the biggest shaking and largest waves happened four times in the past 1000 years in the area we are working.
Thanks to Chris Rowan and Anne Jefferson of the Highly Allocthonous blog for passing on the idea. Head over to the Up-Goer Five Words Box to try it for yourself.
Marshes, mud and crazy postmen
We collected lots of samples of sediment from intertidal marshes close to the mouths of the rivers that cross the plain. We're particularly interested in tidal marshes as they provide evidence for how the land or sea has changed in level over time. On a positive note, we found some good sites and collected lots of samples. Unfortunately we seemed to spend a lot of our time watching the tide go up and down, sometimes until it got too dark to actually see what we were doing!
| Ed at Queule with sediments that we think were deposited before and after the 1960 earthquake and tsunami |
We've also been back to Valdivia and sampled a marsh on Isla del Rey, an island in the Valdivia Estuary. We're pretty pleased with the samples from here, not just because we found a good site, but also because we managed to get to the site in the first place! First we needed to find a boat to take us there, then were trapped and had to escape from a very talkative postman on the island (who wanted to tell us everything from the entire history of Chile to the material used to surface the road in response to us asking who owned the land), and finally we needed to get a boat back. The latter proved to be the most tricky, but it seems in Valdivia it's possible to hail a boat like you hail a taxi!
Labels:
Chile,
Earthquake,
Postmen,
Tsunami,
Valdivia
Location:
Valdivia, Los Ríos Region, Chile
Monday, 14 January 2013
What are we looking for?
After a few more days looking for potential sites, we thought it was probably time we gave an update on what makes a good site and what exactly we're looking for...
We have been digging pits in marshes and looking at incised banks of rivers in the hope of finding abrupt changes in sediment type which might reflect the sudden changes in the level of the land with respect to the sea. A change from a soil with lots of organic matter to a sandier, less organic sediment could reflect a change from a freshwater to a tidal flat with no vegetation.
| Ed digging a pit / pogo-sticking! |
So we're working on tidal marshes which preserve evidence of previous great earthquakes. During the largest subduction earthquakes, land may suddenly subside or uplift by up to a few metres. This coseismic deformation results from extension of the upper plate during the earthquake (as in this diagram from Natural Resources Canada). The area that we are working in subsided during the 1960 earthquake. Low lying land subsided into the sea, inundating farmland and killing trees (see picture 3 of our last blog post).
| 10cm of tsunami sand (light grey) separating two different types of sediment |
Subscribe to:
Posts (Atom)

