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Stephen Brough
Stephen Brough
Verified email at liverpool.ac.uk
Title
Cited by
Cited by
Year
Glacier-like forms on Mars
B Hubbard, C Souness, S Brough
The Cryosphere 8, 2047-2061, 2014
542014
Derivation of High Spatial Resolution Albedo from UAV Digital Imagery: Application over the Greenland Ice Sheet
JC Ryan, A Hubbard, JE Box, S Brough, K Cameron, JM Cook, M Cooper, ...
Frontiers in Earth Science 5, 40, 2017
502017
Linear response of the Greenland ice sheet's tidewater glacier terminus positions to climate
D Fahrner, JM Lea, S Brough, DWF Mair, J Abermann
Journal of Glaciology 67 (262), 193-203, 2021
312021
Exceptional Retreat of Kangerlussuaq Glacier, East Greenland, Between 2016 and 2018
S Brough, JR Carr, N Ross, J Lea
Frontiers in Earth Science 7 (123), 2019
312019
TermPicks: a century of Greenland glacier terminus data for use in scientific and machine learning applications
S Goliber, T Black, G Catania, JM Lea, H Olsen, D Cheng, S Bevan, ...
The Cryosphere 16 (8), 3215-3233, 2022
252022
Area and volume of mid-latitude glacier-like forms on Mars
S Brough, B Hubbard, A Hubbard
Earth and Planetary Science Letters 507, 10-20, 2019
252019
Former extent of glacier-like forms on Mars
S Brough, B Hubbard, A Hubbard
Icarus 274, 37-49, 2016
232016
Landscapes of polyphase glaciation: eastern Hellas Planitia, Mars
S Brough, B Hubbard, C Souness, PM Grindrod, J Davis
Journal of Maps 12 (3), 530-542, 2016
152016
GERALDINE (Google earth Engine supRaglAciaL Debris INput dEtector)–A new Tool for Identifying and Monitoring Supraglacial Landslide Inputs
WD Smith, SA Dunning, S Brough, N Ross, J Telling
Earth Surface Dynamics 8, 1053–1065, 2020
112020
Automated ArcticDEM iceberg detection tool: insights into area and volume distributions, and their potential application to satellite imagery and modelling of glacier–iceberg …
CJ Shiggins, JM Lea, S Brough
The Cryosphere 17 (1), 15-32, 2023
82023
Proper orthogonal decomposition of ice velocity identifies drivers of flow variability at Sermeq Kujalleq (Jakobshavn Isbræ)
DW Ashmore, DWF Mair, JE Higham, S Brough, JM Lea, IJ Nias
The Cryosphere 16 (1), 219-236, 2022
72022
Erosion rates in a wet, temperate climate derived from rock luminescence techniques
RK Smedley, D Small, RS Jones, S Brough, J Bradley, GTH Jenkins
Geochronology 3 (2), 525-543, 2021
42021
Post‐Impact Evolution of the Southern Hale Crater Ejecta; Mars
JL Collins‐May, JR Carr, MR Balme, N Ross, AJ Russell, S Brough, ...
Journal of Geophysical Research: Planets 125 (9), e2019JE006302, 2020
42020
Ocean‐forcing and glacier‐specific factors drive differing glacier response across the 69 oN boundary, east Greenland
S Brough, JR Carr, N Ross, JM Lea
Journal of Geophysical Research: Earth Surface, e2022JF006857, 2023
32023
Supraglacial lake mapping of the entire Greenland Ice Sheet using Google Earth Engine
J Lea, S Brough
AGU Fall Meeting Abstracts 2019, C31A-1483, 2019
32019
Atmospheric drivers of melt-related ice speed-up events on the Russell Glacier in Southwest Greenland
T Schmid, V Radić, A Tedstone, JM Lea, S Brough, M Hermann
The Cryosphere 17 (9), 3933-3954, 2023
12023
Greenland's supraglacial lakes increase by a quarter in the last 20 years
J Lea, S Brough
EGU General Assembly Conference Abstracts, 17968, 2020
12020
Making climate reanalysis and CMIP6 data processing easy: two" point-and-click" cloud based user interfaces for environmental and ecological studies
JM Lea, R Fitt, S Brough, G Carr, J Dick, N Jones, R Webster
Frontiers in Environmental Science 12, 2024
2024
ERALClim - annual global climate variables derived from ERA5-Land reanalysis data (Version 1) [Data set]
JM Lea, R Fitt, S Brough, J Dick, N Jones, G Carr, R Webster
https://doi.org/10.5281/zenodo.8120646, 2024
2024
ERALClim - WMO climate baseline global climate variables derived from ERA5-Land reanalysis data (Version 1) [Data set]
JM Lea, R Fitt, S Brough, J Dick, N Jones, G Carr, R Webster
https://doi.org/10.5281/zenodo.8124385, 2024
2024
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