HR: 0830h
AN: V51A-13 [Abstracts]
TI: Mantle Plume Temperature Variations Immediately Following Continental Breakup of the Northern North Atlantic
AU: * Parkin, C J
EM: parkin@esc.cam.ac.uk
AF: Bullard Laboratories, University of Cambridge,
Madingley Rise, Cambridge, CB3 0EZ United Kingdom
AU: White, R S
EM: rwhite@esc.cam.ac.uk
AF: Bullard Laboratories, University of Cambridge,
Madingley Rise, Cambridge, CB3 0EZ United Kingdom
AU: Kusznir, N J
EM: N.Kusznir@liverpool.ac.uk
AF: Department of Earth Sciences, University of Liverpool, Liverpool, L69 3BX United Kingdom
AB:
The amount of melt generated by mantle decompression beneath an oceanic spreading centre and hence the oceanic crustal
thickness is controlled in part by the temperature of the mantle. By measuring the thickness of the oceanic crust formed
immediately after breakup of the northern North Atlantic during the early Tertiary, we are able to deduce the maximum
elevated mantle temperatures caused by the presence of the Iceland mantle plume. Crustal thickness variations are caused by
temporal variations in the mantle plume temperature: at the present Reykjanes Ridge spreading centre the plume temperature
pulses on a 3-5 Myr timescale with temperature variations of c.30 K.
We show results from two long-offset profiles acquired over oceanic crust; firstly a 170km line perpendicular to the Faroes
rifted continetal margin where oceanic spreading developed close to the Iceland mantle plume; and secondly, a 200km line
perpendicular to the Hatton rifted continental margin where oceanic spreading developed 800km south of the plume. Each
survey recorded long-offset refractions and reflections on OBS (Ocean Bottom Seismometers); 25 instruments, with a spacing of 2-3 km, were used for the Faroes line; and 45 instruments, with a spacing of 4-10 km were used for the Hatton-Rockall line.
Accurate information for sediment velocity and thickness was acquired for the Faroes profile using a 12 km long streamer;
whilst adequate sediment information was determined for the Hatton-Rockall profile using a 2.4 km streamer.
By incorporating sediment structure into a joint reflection and refraction tomographic inversion of the wide-angle OBS data, we have been able to map crustal thickness across the oceanic crust in both regions. Crustal sections across the Faroes and
Hatton lines cover the first 14 Myr and 17 Myr respectively, corresponding to the time interval from continental breakup
through to mature seafloor spreading. With no apparent decrease in spreading rate observed thinning of the crust oceanwards
suggests a mantle temperature decrease of 50 K for the Faroes profile and 70 K for the Hatton profile. For both profiles
early oceanic formation seems to have been dominated by a transient high temperature anomaly, while for later spreading
there is more dependance on the distance of each profile from the plume. Mantle plume temperature variations during this
period would have caused rapid changes in uplift of the north-west European margin and probably controlled Tertiary
sedimentation patterns west of Britain.
The iSIMM Scientific Team comprises NJ Kusznir, RS White, AM Roberts, PAF Christie, R Spitzer, N Hurst, ZC Lunnon, CJ Parkin, AW Roberts, LK Smith, V Tymms, J Eccles and D Healy. The iSIMM project is supported by Liverpool and Cambridge Universities, Schlumberger Cambridge Research, Badley Technology Limited, WesternGeco, Amerada Hess, Anadarko, BP, ConocoPhillips, ENI-UK, Statoil, Shell, the NERC and DTI.
DE: 0930 Oceanic structures
DE: 3025 Marine seismics (0935)
DE: 3094 Instruments and techniques
DE: 8105 Continental margins and sedimentary basins
DE: 8120 Dynamics of lithosphere and mantle--general
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2005 Joint Assembly