Emily Shuckburgh
University of Cambridge
60 Papers
248 Citations
Emily Shuckburgh is an academic researcher from University of Cambridge. The author has contributed to research in topics: Stratosphere & Climate change. The author has an hindex of 24, co-authored 53 publications. Previous affiliations of Emily Shuckburgh include British Antarctic Survey & École Normale Supérieure.
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Papers
Estimates and Implications of Surface Eddy Diffusivity in the Southern Ocean Derived from Tracer Transport
TL;DR: In this paper, near-surface diffusivities associated with geostrophic eddies in the Southern Ocean are estimated by numerically monitoring the lengthening of idealized tracer contours as they are strained by surface geosprophic flow observed by satellite altimetry.
249
Half a degree additional warming, prognosis and projected impacts (HAPPI): background and experimental design
Daniel M. Mitchell,Daniel M. Mitchell,Krishna AchutaRao,Myles R. Allen,Myles R. Allen,Ingo Bethke,Urs Beyerle,Andrew Ciavarella,Piers M. Forster,Jan S. Fuglestvedt,Nathan P. Gillett,Karsten Haustein,William Ingram,William Ingram,Trond Iversen,Viatcheslav Kharin,Nicholas P. Klingaman,Neil Massey,Erich M. Fischer,Carl-Friedrich Schleussner,John Scinocca,Øyvind Seland,Hideo Shiogama,Emily Shuckburgh,Sarah Sparrow,Dáithí Stone,Peter Uhe,Peter Uhe,David Wallom,Michael Wehner,Rashyd Zaaboul +30 more
TL;DR: In this article, the authors present the design of the half a degree additional warming, projections, prognosis and impacts (HAPPI) experiment, which provides a framework for the generation of climate data describing how the climate, and in particular extreme weather, might differ from the present day in worlds that are 1.5 and 2.0 degrees warmer than pre-industrial conditions.
Assessment of Southern Ocean water mass circulation and characteristics in CMIP5 models: Historical bias and forcing response
Jean-Baptiste Sallée,Emily Shuckburgh,Nicolas Bruneau,Andrew J. S. Meijers,Thomas J. Bracegirdle,Zhaomin Wang,Tilla Roy +6 more
TL;DR: In this article, the authors investigate the ability of the models contributing to the fifth Coupled Models Intercomparison Project (CMIP5) to represent the Southern Ocean hydrological properties and its overturning in a water mass framework.
203
Emission of methane from plants
R.E.R Nisbet,Rebecca Fisher,Robert H. Nimmo,Derek S. Bendall,Patrick M. Crill,Angela V. Gallego-Sala,Edward R. C. Hornibrook,Enrique López-Juez,David Lowry,P.B.R Nisbet,P.B.R Nisbet,Emily Shuckburgh,S. Sriskantharajah,Christopher J. Howe,Euan G. Nisbet +14 more
TL;DR: It is shown that plants do not contain a known biochemical pathway to synthesize methane, however, under high UV stress conditions, there may be spontaneous breakdown of plant material, which releases methane.
184
Seasonal Arctic sea ice forecasting with probabilistic deep learning.
Tom R. Andersson,J. Scott Hosking,J. Scott Hosking,María Pérez-Ortiz,Brooks Paige,Brooks Paige,Andrew Elliott,Andrew Elliott,Chris Russell,Stephen Law,Stephen Law,Daniel C. Jones,Jeremy Wilkinson,Tony Phillips,James Byrne,Steffen Tietsche,Beena Balan Sarojini,Eduardo Blanchard-Wrigglesworth,Yevgeny Aksenov,Rod Downie,Emily Shuckburgh,Emily Shuckburgh +21 more
TL;DR: This paper presented a probabilistic, deep learning sea ice forecasting system, IceNet, trained on climate simulations and observational data to forecast the next 6 months of monthly-averaged sea ice concentration maps.