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High Efficient Sedimentary Basin Simulations on Hybrid CPU-GPU Clusters." Cluster Computing 17 (2014): 359-369."
Performance Modeling of Serial and Parallel Implementations of the Fractional Adams-Bashforth-Moulton Method." Fractional Calculus and Applied Analysis 17 (2014): 617-637."
Balancing Efficiency and Accuracy for Sediment Transport Simulations." Computational Science & Discovery 6 (2013): 015011."
Effective Use of Multicore-Based Parallel Computers for Scientific Computing. University of Oslo, 2012.
Using 1000+ GPUs and 10000+ CPUs for Sedimentary Basin Simulations In Proceedings of IEEE Cluster 2012. Los Alamitos, California • Washington • Tokyo: IEEE, 2012.
An OpenMP-Enabled Parallel Simulator for Particle Transport in Fluid Flows In Proceedings of the International Conference on Computational Science, ICCS 2011, Edited by M. Sato and S. Matsuoka. Vol. 4. Procedia Computer Science 4. : Elsevier Science, 2011.
Computational Modeling of the Initiation and Development of Spontaneous Intracellular Ca2+ Waves in Ventricular Myocytes." Philosophical Transactions of the Royal Society A 368 (2010): 3953-3965."
Numerical Analysis of a Dual-Sediment Transport Model Applied to Lake Okeechobee, Florida In Proceedings of the 2010 Ninth International Symposium on Parallel and Distributed Computing, Edited by C. Ozturan. ISPDC '10. IEEE Computer Society Press, 2010.
OpenMP: an Easy Parallel Approach for Scientific Computing on Multi-Core Architecture In A short course respectively given at Simula in March and University of Oslo in May., 2010.
Parallel Programming, OpenMP In CBC Lecture on Parallel Programming, OpenMP, March 17., 2010.
Evolution of Intracellular Ca2+ Waves From About 10,000 RyR Clusters: Towards Solving a Computationally Daunting Task In The Fifth International Conference on Functional Imaging and Modeling of the Heart, Edited by N. Ayache, H. Delingette and M. Sermesant. Lecture Notes in Computer Science, vol. 5528. Springer, 2009.