The NCS-Model: A seismic foundation model trained on the Norwegian repository of public data
Alba Ordonez, Theodor Johannes Line Forgaard, David Wade, Aina Juell Bugge, Hakon Nese, Anders Ueland Waldeland

TL;DR
The paper introduces the NCS-models, seismic foundation models trained on Norwegian seismic data, demonstrating that basin-specific pretraining significantly improves interpretation performance over natural-image pretrained models.
Contribution
It develops basin-scale seismic foundation models using large-scale self-supervised learning and provides practical training methods for 3D seismic data interpretation.
Findings
Seismic pretraining outperforms natural-image models for seismic tasks.
Large-scale basin-specific pretraining yields better results than smaller or global models.
2.5D tokenization balances accuracy and computational efficiency.
Abstract
We present the NCS-models, a family of seismic foundation models pretrained on a large share of full-stack seismic cubes from the Norwegian Continental Shelf (NCS) available through the public DISKOS database. The model weights are open-sourced for the wider geoscience community. Foundation models trained with large-scale self-supervision are emerging as a promising basis for automatic seismic interpretation. However, most existing seismic models rely on limited or proprietary datasets, and it remains unclear how well natural-image foundation models transfer to seismic data. Our goals are to develop basin-scale seismic foundation models, provide practical recipes for scalable 3D training, and quantify the effects of basin-targeted pretraining and token dimensionality on downstream interpretation performance. Using masked autoencoders with Vision Transformer backbones, we pretrain models…
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Taxonomy
TopicsSeismic Imaging and Inversion Techniques · Reservoir Engineering and Simulation Methods · Underwater Acoustics Research
