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Commandeur, C., Sprik, R., Stolk, C., & Louwerse, G. (2022). Acoustic emission monitoring to optimize the end-of-cast in blast furnaces. Ironmaking and Steelmaking. https://doi.org/10.1080/03019233.2022.2145422
Commandeur, C., Sprik, R., Stolk, C., & Louwerse, G. (2022). Observations and improvements on the impact-echo method used for blast furnace hearth refractory measurement. Ironmaking and Steelmaking. https://doi.org/10.1080/03019233.2022.2081956
2021
Stolk, C. C. (2021). A Time-Domain Preconditioner for the Helmholtz Equation. SIAM Journal on Scientific Computing, 43(5), A3469-A3502. https://doi.org/10.1137/20M1359997
2019
Stolk, C. C., & Sbrizzi, A. (2019). Understanding the Combined Effect of k-Space Undersampling and Transient States Excitation in MR Fingerprinting Reconstructions. IEEE Transactions on Medical Imaging, 38(10), 2445-2455. [8649707]. https://doi.org/10.1109/TMI.2019.2900585
2017
Stolk, C. C. (2017). An improved sweeping domain decomposition preconditioner for the Helmholtz equation. Advances in Computational Mathematics, 43(1), 45-76. https://doi.org/10.1007/s10444-016-9475-y[details]
Stolk, C. C. (2016). A dispersion minimizing scheme for the 3-D Helmholtz equation based on ray theory. Journal of computational Physics, 314, 618-646. https://doi.org/10.1016/j.jcp.2016.03.023[details]
Witte, P. A., Stolk, C. C., & Herrmann, F. J. (2016). Phase velocity error minimizing scheme for the anisotropic pure P-wave equation. SEG Technical Program Expanded Abstracts, 35, 452-457. https://doi.org/10.1190/segam2016-13844850.1[details]
2014
Stolk, C. C., Ahmed, M., & Bhowmik, S. K. (2014). A Multigrid Method for the Helmholtz Equation with Optimized Coarse Grid Corrections. SIAM Journal on Scientific Computing, 36(6), A2819-A2841. https://doi.org/10.1137/13092349X[details]
op 't Root, T. J. P. M., Stolk, C. C., & de Hoop, M. V. (2012). Linearized inverse scattering based on seismic reverse time migration. Journal de Mathématiques Pures et Appliquées, 98(2), 211-238. https://doi.org/10.1016/j.matpur.2012.02.009[details]
2011
Bhowmik, S. K., & Stolk, C. C. (2011). Preconditioners based on windowed Fourier frames applied to elliptic partial differential equations. Journal of Pseudo-Differential Operators and Applications, 2(3), 317-342. https://doi.org/10.1007/s11868-011-0026-5[details]
Archer, C., Hochstenbach, M., Hoede, K., Meinsma, G., Meijer, H., Salah, A. A., ... Zyprych, J. (2009). Neural spike sorting with spatio-temporal features. In O. Bokhove, J. Hurink, G. Meinsma, C. Stolk, & M. Vellekoop (Eds.), Proceedings of the sixty-third European Study Group Mathematics with Industry: Enschede, The Netherlands, 28 January-1 February, 2008 (pp. 21-45). Enschede, the Netherlands: Universiteit Twente. [details]
Stolk, C. C. (2009). A fast method for linear waves based on geometrical optics. SIAM journal on numerical analysis, 47(2), 1168-1194. https://doi.org/10.1137/070698919[details]
Stolk, C. C., De Hoop, M. V., & Opt Root, T. J. P. M. (2009). Reverse time migration-inversion from single-shot data. SEG Technical Program Expanded Abstracts, 28(1), 2996-2999.
van den Bergen, B., Stolk, C. C., van den Berg, J. B., Lagendijk, J. J. W., & van den Berg, C. A. T. (2009). Ultra fast electromagnetic field computations for RF multi-transmit techniques in high field MRI. Physics in Medicine and Biology, 54(5), 1253-1264. https://doi.org/10.1088/0031-9155/54/5/010[details]
2008
Herrmann, F. J., Moghaddam, P., & Stolk, C. C. (2008). Sparsity- and continuity-promoting seismic image recovery with curvelet frames. Applied and Computational Harmonic Analysis, 24(2), 150-173. https://doi.org/10.1016/j.acha.2007.06.007
2009
Bokhove, O., Hurink, J., Meinsma, G., Stolk, C., & Vellekoop, M. (Eds.) (2009). Proceedings of the sixty-third European Study Group Mathematics with Industry: Enschede, The Netherlands, 28 January-1 February, 2008. Universiteit Twente. [details]
2013
Stolk, C. (2013). De wiskunde van reflectieseismiek. Nieuw Archief voor Wiskunde, 5/14(3), 217-220. [details]
2021
Westerdiep, J. H. (2021). Space-time residual minimization for parabolic partial differential equations. [details]
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