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Items where NERC Author is "Haslam, Ed"

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Number of items: 20.

Uhlemann, S.; Smith, A.; Chambers, J.; Dixon, N.; Dijkstra, T.; Haslam, E.; Meldrum, P.; Merritt, A.; Gunn, D.; Mackay, J.. 2016 Assessment of ground-based monitoring techniques applied to landslide investigations. Geomorphology, 253. 438-451. https://doi.org/10.1016/j.geomorph.2015.10.027

Gunn, D.A.; Chambers, J.E.; Uhlemann, S.; Wilkinson, P.B.; Meldrum, P.I.; Dijkstra, T.A.; Haslam, E.; Kirkham, M.; Wragg, J.; Holyoake, S.; Hughes, P.N.; Hen-Jones, R.; Glendinning, S.. 2015 Moisture monitoring in clay embankments using electrical resistivity tomography. Construction and Building Materials, 92. 82-94. https://doi.org/10.1016/j.conbuildmat.2014.06.007

Dixon, N.; Spriggs, M.P.; Smith, A.; Meldrum, P.; Haslam, E.. 2015 Quantification of reactivated landslide behaviour using acoustic emission monitoring. Landslides, 12 (3). 549-560. https://doi.org/10.1007/s10346-014-0491-z

Dixon, Neil; Smith, Alister; Spriggs, Matthew; Ridley, Andrew; Meldrum, Philip; Haslam, Edward. 2015 Stability monitoring of a rail slope using acoustic emission. Proceedings of the Institution of Civil Engineers - Geotechnical Engineering, 168 (5). 373-384. https://doi.org/10.1680/jgeen.14.00152

Chambers, J.E.; Gunn, D.A.; Wilkinson, P.B.; Meldrum, P.I.; Haslam, E.; Holyoake, S.; Kirkham, M.; Kuras, O.; Merritt, A.; Wragg, J.. 2014 4D electrical resistivity tomography monitoring of soil moisture dynamics in an operational railway embankment. Near Surface Geophysics, 12 (1). 61-72. https://doi.org/10.3997/1873-0604.2013002

Smith, A.; Dixon, N.; Meldrum, P.; Haslam, E.; Chambers, J.. 2014 Acoustic emission monitoring of a soil slope: comparisons with continuous deformation measurements. Géotechnique Letters, 4 (4). 255-261. https://doi.org/10.1680/geolett.14.00053

Haslam, E.P.; Gunn, D.A.; Jackson, P.D.; Lovell, M.A.; Aydin, A.; Prance, R.J.; Watson, P.. 2014 Novel laboratory methods for determining the fine scale electrical resistivity structure of core. Journal of Applied Geophysics, 111. 384-392. https://doi.org/10.1016/j.jappgeo.2014.07.017

Hobbs, P.R.N.; Jones, L.D.; Kirkham, M.P.; Roberts, P.; Haslam, E.P.; Gunn, D.A.. 2014 A new apparatus for determining the shrinkage limit of clay soils. Géotechnique, 64 (3). 195-203. https://doi.org/10.1680/geot.13.P.076

Chambers, Jonathan; Meldrum, Philip; Gunn, David; Wilkinson, Paul; Merritt, Andrew; Murphy, William; West, Jared; Kuras, Oliver; Haslam, Edward; Hobbs, Peter; Pennington, Catherine; Munro, Chris. 2013 Geophysical-geotechnical sensor networks for landslide monitoring. In: Margottini, Claudio, (ed.) Landslide science and practice. Volume 2, early warning, instrumentation and monitoring. Springer, 289-294.

Hobbs, P.R.N.; Jones, L.D.; Kirkham, M.P.; Morgan, D.J.R.; Pennington, C.V.L.; Jenkins, G.O.; Dashwood, C.; Haslam, E.P.; Freeborough, K.A.; Lawley, R.S.. 2013 Slope dynamics project report : Holderness Coast - Aldbrough, survey & monitoring, 2001-2013. Nottingham, UK, British Geological Survey, 150pp. (OR/11/063) (Unpublished)

Uhlemann, Sebastian; Kuras, Oliver; Haslam, Ed; Meldrum, Philip. 2013 Verifying multisensor capacitive resistivity imaging (CRI) for monitoring rock-freezing experiments. In: SEG-AGU Joint Workshop on Cryosphere Geophysics: Understanding a Changing Climate with Subsurface Imaging, Idaho, USA, 6-8 January 2013. (Unpublished)

Kuras, Oliver; Krautblatter, Michael; Murton, Julian; Haslam, Ed; Meldrum, Phi; Wilkinson, Paul; Uhlemann, Sebastian. 2012 Monitoring rock-freezing experiments in the laboratory with capacitive resistivity imaging. In: 18th Near Surface 2012, Paris, France, 3-5 Sept 2012. EAGE.

Kuras, Oliver; Krautblatter, Michael; Murton, Julian; Haslam, Ed; Wilkinson, Paul; Lister, Bob; Meldrum, Phil. 2012 Time-lapse capacitive resistivity imaging: a new technology concept for the monitoring of permafrost. [Poster] In: The Geophysics of the Cryosphere and Glacial Products, London, UK, 9-10 Feb 2012. British Geological Survey. (Unpublished)

Kuras, Oliver; Meldrum, Philip; Haslam, Ed; Wilkinson, Paul; Krautblatter, Michael; Murton, Julian; Ogilvy, Richard. 2012 Time-lapse capacitive resistivity imaging: a novel methodology for the monitoring of permafrost processes in bedrock. [Invited Paper] In: 25th Symposium on the Application of Geophysics to Engineering and Environmental Problems (SAGEEP), TucsonUSA, 25-29 March 2012. (Unpublished)

Kuras, Oliver; Uhlemann, Sebastian; Krautblatter, Michael; Murton, Julian; Haslam, Ed; Wilkinson, Paul; Meldrum, Philip. 2012 The use of capacitive resistivity imaging (CRI) for monitoring laboratory experiments simulating permafrost growth, persistence and thaw in bedrock. [Poster] In: AGU Fall Meeting 2012, San Francisco, USA, 3-7 Dec 2012. (Unpublished)

Chambers, Jonathan; Meldrum, Philip; Gunn, David; Wilkinson, Paul; Merritt, Andrew; Murphy, William; West, Jared; Kuras, Oliver; Haslam, Edward; Hobbs, Peter; Pennington, Catherine; Munro, Chris. 2011 Geophysical-geotechnical sensor networks for landslide monitoring. In: 2nd World Landslide Forum, Rome, Italy, 3-9 Oct 2011.

Kuras, Oliver; Meldrum, Phil; Haslam, Ed; Wilkinson, Paul; Krautblatter, Michael; Murton, Julian; Ogilvy, Richard. 2011 Time-lapse capacitive resistivity imaging : a novel methodology for the monitoring of permafrost processes in bedrock. In: Near Surface 2011, Leicester, UK, 12-14 Sept 2011. EAGE.

Gunn, D.A.; Chambers, J.E.; Meldrum, P.I.; Ogilvy, R.D.; Wilkinson, P.B.; Haslam, E.; Holyoake, S.; Wragg, J.. 2011 Volumetric monitoring of dynamic moisture distribution in an aged railway embankment. In: 17th Near Surface 2011, Leicester, UK, 12-14 Sept 2011. (Unpublished)

Hobbs, P.R.N.; Jones, L.D.; Roberts, P.D.; Haslam, E.. 2010 SHRINKiT: Automated measurement of shrinkage limit for clay soils. Nottingham, UK, British Geological Survey, 51pp. (IR/10/077)

Gunn, D.A.; Nelder, L.M.; Chambers, J.E.; Raines, M.G.; Reeves, H.J.; Boon, D.P.; Pearson, S.G.; Haslam, E.P.; Carney, J.N.; Stirling, A.; Ghataora, G.S.; Burrow, M.P.N.; Tinsley, R.D.; Tilden-Smith, R. 2006 Assessment of railway embankment stiffness using continuous surface waves. In: Railway foundations : RailFound 06, University of Birmingham, 11-13 Spetember 2006. Birmingham, University of Birmingham, 94-106.

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