Applying time-lapse seismic methods to reservoir management and field development planning at South Arne, Danish North Sea

被引:6
作者
Herwanger, J. V. [1 ]
Schiott, C. R. [2 ]
Frederiksen, R. [2 ]
If, F. [2 ]
Vejaek, O. V. [2 ]
Wold, R. [3 ]
Hansen, H. J. [4 ]
Palmer, E. [5 ]
Koutsabeloulis, N. [6 ]
机构
[1] WesternGeco, 10001 Richmond Ave, Houston, TX 77042 USA
[2] Hess, DK-1100 Copenhagen, Denmark
[3] Schlumberger Informat Solut, Houston, TX 77077 USA
[4] Schlumberger Reservoir Seism Serv, DK-2200 Copenhagen, Denmark
[5] WesternGeco, Gatwick RH6 0NZ, England
[6] Schlumberger Reservoir Geomech Ctr Excellence, Bracknell RG12 2XB, Berks, England
来源
PETROLEUM GEOLOGY: FROM MATURE BASINS TO NEW FRONTIERS - PROCEEDINGS OF THE 7TH PETROLEUM GEOLOGY CONFERENCE, VOLS 1 AND 2 | 2010年
关键词
time-lapse seismic; rock physics; AVO inversion; reservoir geomechanics; compaction; COMPACTION; SIMULATION;
D O I
10.1144/0070523
中图分类号
TE [石油、天然气工业];
学科分类号
0820 ;
摘要
At South Arne a highly repeatable time-lapse seismic survey (normalized root-mean-square error or NRMS of less than 0.1) allowed us to reliably monitor reservoir production processes during five years of reservoir depletion. Time-lapse AVO (amplitude v. offset) inversion and rock-physics analysis enables accurate monitoring of fluid pathways. On the crest of the field, water injection results in a heterogeneous sweep of the reservoir, whereby the majority of the injected water intrudes into a highly porous body. This is in contrast to a pre-existing reservoir simulation model predicting a homogeneous sweep. On the SW flank, time-lapse AVO inversion to changes in water saturation Delta S-w reveals that the drainage pattern is fault controlled. Time-lapse seismic data furthermore explain the lack of production from the far end of a horizontal producer (as observed by production logging), by showing that the injected water does not result in the expected pressure support. On the highly porous crest of the reservoir compaction occurs. Time-lapse time shifts in the overburden are used as a measure for compaction and are compared with predictions of reservoir compaction from reservoir geomechanical modelling. In areas where compaction observations and predictions disagree, time-lapse seismic data give the necessary insight to validate, calibrate and update the reservoir geomechanical model. The information contained in time-lapse seismic data can only be fully extracted and used when the reservoir simulation model, the reservoir geomechanical model and the time-lapse seismic inversion models are co-visualized and available in the same software application with one set of coordinates. This allows for easy and reliable investigation of reservoir depletion and gives deeper insight than using reservoir simulation or time-lapse seismic individually.
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页码:523 / 535
页数:13
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