4D seismic quantification of a growing CO2plume at Sleipner, North Sea

Author:

CHADWICK R. A.1,ARTS R.2,EIKEN O.3

Affiliation:

1. British Geological Survey, Kingsley Dunham Centre, Keyworth, Nottingham, NG12 5GG, UK (e-mail:rach@bgs.ac.uk)

2. Netherlands Institute of Applied Geoscience TNO – National Geological Survey, Princetonlaan 6, PO Box 80015, 3508 TA Utrecht, The Netherlands

3. Statoil Research Centre, Rotvoll, N-7005 Trondheim, Norway

Abstract

CO2produced at the Sleipner natural gas field is being injected into the Utsira Sand, a major saline aquifer. Time-lapse seismic data were acquired in 1999 and 2001, with 2.35 and 4.26 million tonnes of CO2in the reservoir respectively. The CO2plume is imaged as a number of bright sub-horizontal reflections within the reservoir unit, growing with time, and underlain by a prominent velocity pushdown. No leakage has been detected from the repository reservoir. The reflections are interpreted as tuned responses from thin (<8 m thick) layers of CO2trapped beneath thin intra-reservoir mudstones and the reservoir caprock. However, these alone are unable to account for the amount of observed pushdown. A two-component 3D saturation model is therefore developed for the 1999 dataset, with high-saturation CO2forming the layers and a lesser component of low-saturation CO2between the layers. Saturations are calculated from the observed reflectivity and velocity pushdown and the resulting model contains 85% of the known injected mass of CO2. A 2D synthetic seismic section through the saturation model matches the observed seismic response well and the model is considered to provide an acceptable description of the CO2distribution. Signal attenuation is more pronounced within the 2001 plume and its effects are likely to become more significant with time, perhaps reducing the efficacy of seismic verification techniques as the plume grows further. Other geophysical methods, such as microgravimetry, may become increasingly useful at this stage.

Publisher

Geological Society of London

Subject

Fuel Technology,Energy Engineering and Power Technology,Geology,Geochemistry and Petrology

Reference21 articles.

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