Showing posts with label British Geological Survey. Show all posts
Showing posts with label British Geological Survey. Show all posts

Thursday, 15 November 2012

News - How ground movement is changing landscapes (Nottinghamshire)

new surveying technique developed at The University of Nottingham is giving geologists their first detailed picture of how ground movement associated with historical mining is changing the face of our landscape.


The new development by engineers at the University has revealed a more complete map of subsidence and uplift caused by the settlement of old mines in the East Midlands and other areas of the country and has shown that small movements in the landscape are bound by natural fault lines and mining blocks.

It appears to support concerns that movement associated with historical mining is continuing far longer than previously anticipated.

How the research was done
The research has been led by Dr Andrew Sowter in the University’s Department of Civil Engineering. He said: "This method allows us to measure patterns of slow millimetre-scale movement across large regions of the landscape and, in the UK, almost everywhere we look is dominated by our industrial past. Large tracts of our land, including parts of our cities, towns and infrastructure as well as agricultural and woodland areas, are steadily creeping upwards over mines that were closed decades ago."

The new development builds on existing technology that allows engineers to use satellite radar technology to measure points on the landscape over a length of time to assess whether they are moving up (uplifting) or sinking down (subsiding).

A complete picture
Previously, this has relied on using fixed, unchanging objects like buildings that can be accurately re-measured and compared against previous measurements time after time. However, the technique has not been practical for use in the rural landscape meaning that geologists could only get half the picture.

Now, Dr Sowter has developed a technique called the Intermittent Small Baseline Subset (ISBAS) method which adapts the same technology and extends it to rural areas by taking stacks of these radar images and identifying those more transient points in the rural landscape against which changes over time are able to be measured.

The technique is now being used by the British Geological Survey (BGS), based in Keyworth in Nottinghamshire, which is the world’s oldest national geological survey providing expert services and impartial advice on all areas of geosciences for both the public and private sectors.

Principal geologist at the BGS Poul Strange said: “This new technique is going to allow us to refine our geological maps. Previously when surveying rural areas we were almost guessing and the final result was more of an interpretation. Now we are able to produce maps that far more accurately reflect what is happening with the geology below the surface and enable us to predict any potential risks posed by ground movement.

“Rural areas are particularly important because we need to know what is happening with the geology there and how movement or natural fault lines may affect future developments such as new housing or high speed rail links.”

Bounce back effect
The technique will assist BGS in the work it is doing looking at potential ground movement in former mining areas of South Derbyshire, Nottinghamshire and Leicestershire where most mines closed no later than the early 90s.

The BGS has so far recorded geological evidence that movement in areas where deep coal mining has been in operation historically actually continues for up to 11 years, far more than any previous estimate such as the six-year limit set by the Subsidence Act of 1991.

They believe the problem may be caused by ground water, which would have been pumped out while the mines were open, seeping back into the disused pits and causing a ‘bounce back’ effect on the surrounding landscape. However, they estimate that this uplift is only likely to offer around a 4% recovery on where the landscape would have been before mining began.

In particular, they have been using the new technique to explore the rural areas surrounding locations like Swadlincote in Derbyshire and Oakthorpe near Measham in Leicestershire which have a long-standing history of problems with mining-related subsidence.

Seismic activity
They are able to see how this movement is interacting with natural fault lines, which could potentially cause other seismic activity such as the Market Rasen earthquake of 2008, which measured 5.2 on the Richter Scale and was felt as far away as Wales, Scotland and London.

The research could also be of vital significance in assessing future issues with subsidence and uplift connected with other types of activity such as fracking, where geological shale rocks are drilled and injected with fluid to encourage them to fracture and release natural gases.

Dr Sowter has previously spent time working at The University of Nottingham China Ningbo, where his research centred on China’s ‘sinking cities’ problem, where some of the country’s most densely populated communities, such as Shanghai, are sinking under the weight of towering skyscrapers.

Funded by the National Natural Science Foundation of China, the work aimed to develop techniques to help Chinese authorities identify with far greater accuracy which areas are moving and by how much.

(EurekAlert, November 2012)

From: http://www.health24.com/news/Enviro_Health_/1-1308,77863.asp

Thursday, 17 May 2012

News - £17m revamp at geological centre (Keyworth)

VISITORS can take a journey back through three billion years at the British Geological Survey's revamped centre in Keyworth.


The centre, which provides expert services and advice in all areas of geoscience, has had a £17.2million renovation.

It now features an eco-friendly office for scientists and support staff, a reception and conference facility, as well as a geological walkway, in which three billion years of the earth's history are squeezed into a 130-metre long stone concourse.

The British Geological Survey's executive director Professor John Ludden said: "BGS enters a new era with the opening of its renovated site.

"It will develop an innovation centre and build further partnerships with industry and research institutions, focusing on the energy and environmental challenges of the future.

"We welcome visitors to the geological walkway, who will be able to take a journey back through 3,000 million years of geological history."

The walkway consists of natural stone paving laid out to represent the different geological time periods, with 40 different types of rock used.

Every step of the way tells a different story, starting from a period before life began through to the age of the dinosaurs and the Ice Age.

Among the large boulders scattered along the walkway is one that is three billion years old and weighs 15 tonnes.

Barcodes along the walk can be scanned with smartphones to help visitors identify the rocks.

The new James Hutton Building, home to 100 BGS scientists and support staff, is at the centre of the walkway.

The building will recycle rainwater, feature a combined heat and power plant, solar panels on its roof and a passive cooling system.

Other parts of the existing site have been redeveloped to create a new reception and a state-of-the-art conference facility with the capacity to host meetings for up to 400 scientists.

The site will be officially renamed the British Geological Survey Environmental Science Centre by the Government's chief scientific adviser, Sir John Beddington, at an open day today.

From: http://www.thisisnottingham.co.uk/pound-17m-revamp-geological-centre/story-16106517-detail/story.html

Tuesday, 17 January 2012

Darwin's lost fossils: Treasures that helped shape theory of evolution found by chance in dusty cabinet (Keyworth)

For 160 years they lay forgotten in a dusty cabinet, lost to science because they had been hastily  filed away.

Now a treasure trove of fossils collected by the young Charles Darwin has been discovered by chance.

They were collected in the 1830s in South America during his five-year voyage on HMS Beagle

Experts say the find sheds new light on this formative period for Darwin, then in his 20s, whose study of tropical plants and wildlife set the stage for his ground-breaking theory of evolution.

The fossils, neatly pressed on to slides, some bearing Darwin’s signature, were discovered by Dr Howard Falcon-Lang, a palaeontologist at Royal Holloway, University of London. 

He was searching for some other fossils at the British Geological Survey’s cavernous storeroom in Keyworth, Nottinghamshire. Dr Falcon-Lang came upon an old cabinet, with drawers inside labelled ‘unregistered fossil plants’, and decided to take a look.

‘I can’t resist a mystery so I pulled one open,’ he said. ‘What I found inside made my jaw drop! Inside were hundreds of beautiful glass slides. Almost the first I picked up was labelled “C. Darwin Esq”.

‘This is an amazing snapshot into Darwin’s working life. This was one of the most exciting periods in the history of science, forming the mind of the man who would develop the theory of evolution, which would change the world.’ 

The 314 slides found by Dr Falcon-Lang include 40million-year-old plants from a remote island off the coast of Chile.

Another shows a towering tree-sized fungus which covered the Earth 400million years ago when the climate was so hot there was no ice even at the Poles

The slides were made by slicing and polishing the fossils into translucent sheets and then placing them between two glass plates so they could be studied under a microscope. Dr Falcon-Lang added: ‘There are 100 million-year-old fossil trees from the latter age of the dinosaurs. It’s real Jules Verne stuff, and scientists are only now starting to study it and understand its scientific importance.’

The fossils were lost because Darwin’s best friend, the botanist Joseph Hooker, did not catalogue them properly. He had been given the job while working at the British Geological Survey in 1846.

But before he was able to put them in the official specimen register, he was offered the chance to go on a voyage to the Himalayas so simply stored them in the cabinet. 

It was moved to the group’s first headquarters in Charing Cross in   London in 1851. The cabinet moved to the Geological Museum in South Kensington in 1935 and half a century later to Nottinghamshire – but it was never opened.

Dr John Ludden, of the Geological Survey, said: ‘This is quite a remarkable discovery. It makes one wonder what else might be hiding in our collections.’ The discoveries can be viewed on the British Geological Survey website from today.