个人简介
Dr. Stephen Grebby holds an MPhys (2005) in Physics with Space Science and Technology, an MSc (2006) in Physical Geography and PhD (2011) in Geological Remote Sensing from the University of Leicester. In 2011, he joined the British Geological Survey, where he took up a position as a Remote Sensing Geoscientist. In 2016, Dr. Grebby was appointed as Assistant Professor in Earth Observation, in the Faculty of Engineering. He is affiliated with the GeoEnergy Research Centre (GERC) - a joint venture between The University of Nottingham and British Geology Survey.
研究领域
Dr. Grebby's current research interests are focused on the use of satellite, airborne (manned and UAV) and ground-based Earth Observation techniques for the exploration of geoenergy resources and the monitoring of their exploitation. This includes identifying potential geothermal energy resources by mapping anomalous mineral assemblages and surface temperatures, determining key characteristics (e.g., porosity, permeability, fracture density) for reservoir modelling, and monitoring leakages and ground motion at sites associated with gas storage (i.e., CO2) and energy production.
近期论文
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TURNER, STUART, BRIDGES, JOHN, GREBBY, STEPHEN and EHLMANN, BETHANY, 2016. Hydrothermal activity recorded in post Noachian-aged impact craters on Mars. JOURNAL OF GEOPHYSICAL RESEARCH: PLANETS. 121(4), 608-625
KIRKWOOD, CHARLIE, CAVE, MARK, BEAMISH, DAVID, GREBBY, STEPHEN and FERREIRA, ANTONIO, 2016. A machine learning approach to geochemical mapping. JOURNAL OF GEOCHEMICAL EXPLORATION. 167, 49-61
GREBBY, STEPHEN, FIELD, ELENA and TANSEY, KEVIN, 2016. Evaluating the use of an object-based approach to lithological mapping in vegetated terrain REMOTE SENSING. 8(10), 843
FARRANT, ANDREW R., NOBLE, STEPHEN R., BARRON, A. J. MARK, SELF, CHARLES A. and GREBBY, STEPHEN R., 2015. Speleothem U-series constraints on scarp retreat rates and landscape evolution: an example from the Severn valley and Cotswold Hills gull-caves, UK. JOURNAL OF THE GEOLOGICAL SOCIETY. 172(1), 63-76
GREBBY, STEPHEN, CUNNINGHAM, DICKSON, TANSEY, KEVIN and NADEN, JONATHAN, 2014. The Impact of Vegetation on Lithological Mapping Using Airborne Multispectral Data: A Case Study for the North Troodos Region, Cyprus. REMOTE SENSING. 6(11), 10860-10887
MILLER, JAMES D., KIM, HYEONJUN, KJELDSEN, THOMAS R., PACKMAN, JOHN, GREBBY, STEPHEN and DEARDEN, RACHEL, 2014. Assessing the impact of urbanization on storm runoff in a pen-urban catchment using historical change in impervious cover. JOURNAL OF HYDROLOGY. 515, 59-70
MILLER, JAMES D. and GREBBY, STEPHEN, 2014. Mapping long-term temporal change in imperviousness using topographic maps. INTERNATIONAL JOURNAL OF APPLIED EARTH OBSERVATION AND GEOINFORMATION. 30, 9-20
ODBERT, HENRY M. and GREBBY, STEPHEN, 2014. A note on geographical systems and maps of Montserrat. In: WADGE, G., ROBERTSON, R.E, & VOIGHT, B., ed., The eruption of Soufrière Hills volcano, Montserrat from 2000 to 2010: GEOLOGICAL SOCIETY, LONDON, MEMOIRS 39. 489-494
GREBBY, STEPHEN, CUNNINGHAM, DICKSON, NADEN, JONATHAN and TANSEY, KEVIN, 2012. Application of airborne LiDAR data and airborne multispectral imagery to structural mapping of the upper section of the Troodos ophiolite, Cyprus. INTERNATIONAL JOURNAL OF EARTH SCIENCES. 101(6), 1645-1660
GREBBY, STEPHEN, NADEN, JONATHAN, CUNNINGHAM, DICKSON and TANSEY, KEVIN, 2011. Integrating airborne multispectral imagery and airborne LiDAR data for enhanced lithological mapping in vegetated terrain. REMOTE SENSING OF ENVIRONMENT. 115(1), 214-226
GREBBY, STEPHEN, CUNNINGHAM, DICKSON, NADEN, JONATHAN and TANSEY, KEVIN, 2010. Lithological mapping of the Troodos ophiolite, Cyprus, using airborne LiDAR topographic data. REMOTE SENSING OF ENVIRONMENT. 114(4), 713-724
CUNNINGHAM, DICKSON, GOSAR, ANDREJ, KASTELIC, VANJA, GREBBY, STEPHEN and TANSEY, KEVIN, 2007. Multi-disciplinary investigations of active faults in the Julian Alps, Slovenia. ACTA GEODYNAMICA ET GEOMATERIALIA. 4(1), 77-85
CUNNINGHAM, DICKSON, GREBBY, STEPHEN, TANSEY, KEVIN, GOSAR, ANDREJ and KASTELIC, VANJA, 2006. Application of airborne LiDAR to mapping seismogenic faults in forested mountainous terrain, southeastern Alps, Slovenia. GEOPHYSICAL RESEARCH LETTERS. 33(20), L20308