diff --git a/doc/more/publications.rst b/doc/more/publications.rst index 5309a6be..8b70e7a7 100644 --- a/doc/more/publications.rst +++ b/doc/more/publications.rst @@ -1,22 +1,29 @@ -Publications involving Veros -============================ +Some publications involving Veros +================================= Peer-reviewed articles ---------------------- -About Veros -+++++++++++ - -- Häfner, D., Nuterman, R., & Jochum, M. (2021). Fast, cheap, and turbulent—Global ocean modeling with GPU acceleration in Python. Journal of Advances in Modeling Earth Systems, 13, e2021MS002717. - `https://doi.org/10.1029/2021MS002717 `__ -- Häfner, D., Jacobsen, R. L., Eden, C., Kristensen, M. R., Jochum, M., Nuterman, R., & Vinter, B. (2018). Veros v0. 1–a fast and versatile ocean simulator in pure Python. Geoscientific Model Development, 11(8), 3299-3312. - `https://doi.org/10.5194/gmd-11-3299-2018 `__ - -Using Veros -+++++++++++ - +- Mrozowska, M. A., Avery, J., Stoustrup, A., Nuterman, R., Johnsen, C.-J., Thormann, A., & Jochum, M. (2025). + Bayesian optimization with GPU acceleration for ocean models. Journal of Geophysical Research: Machine Learning and Computation, 2, e2024JH000517. + `https://doi.org/10.1029/2024JH000517 `__ +- Lohmann, J., Hansen, A. B., Lovo, A., Chapman, R., Bouchet, F., & Lucarini, V. (2025). The role of edge states for early warning of tipping points. Proc. Roy. Soc. A, 481, 20240753. + `https://doi.org/10.1098/rspa.2024.0753 `__ +- Lohmann, J., & Lucarini, V. (2024). Melancholia States of the Atlantic Meridional Overturning Circulation. Phys. Rev. Fluids 9, 123801. + `https://doi.org/10.1103/PhysRevFluids.9.123801 `__ +- Lohmann, J., Wuys, B., Ditlevsen, P. D., & Ashwin, P. (2024). On the predictability of possible storylines for forced complex systems. J. Phys. Complex. 5 035015. + `https://doi.org/10.1088/2632-072X/ad7b95 `__ +- Lohmann, J., Dijkstra, H. A., Jochum, M., Lucarini, V., & Ditlevsen, P. D. (2024). Multistability and intermediate tipping of the Atlantic Ocean circulation. Science Adv. 10, eadi4253. + `https://doi.org/10.1126/sciadv.adi4253 `__ +- Lohmann, J., & Svensson, A. (2022). Ice core evidence for major volcanic eruptions at the onset of Dansgaard–Oeschger warming events. Clim. Past 18 2021-2043. + `https://doi.org/10.5194/cp-18-2021-2022 `__ - Lohmann, J., & Ditlevsen, P. D. (2021). Risk of tipping the overturning circulation due to increasing rates of ice melt. Proceedings of the National Academy of Sciences, 118(9). `https://doi.org/10.1073/pnas.2017989118 `__ +- **Häfner, D., Nuterman, R., & Jochum, M. (2021). Fast, cheap, and turbulent—Global ocean modeling with GPU acceleration in Python. Journal of Advances in Modeling Earth Systems, 13, e2021MS002717.** + `https://doi.org/10.1029/2021MS002717 `__ +- **Häfner, D., Jacobsen, R. L., Eden, C., Kristensen, M. R., Jochum, M., Nuterman, R., & Vinter, B. (2018). Veros v0. 1–a fast and versatile ocean simulator in pure Python. Geoscientific Model Development, 11(8), 3299-3312.** + `https://doi.org/10.5194/gmd-11-3299-2018 `__ + Talks ----- @@ -38,6 +45,27 @@ Talks Theses ------ +- Nicholas O. Posborg. (2025). Bathymetry Optimization in the Denmark Strait, BSc Thesis, 24p. + `Link to PDF `__. +- Maria Friis Greibe. (2025). Investigating Hydrodynamics and Circulation in the Gullmar Fjord, + BSc Thesis, 28p. + `Link to PDF `__. +- Asger Thormann. (2025). Optimizing eddy kinetic energy in Veros, BSc Thesis, 25p. + `Link to PDF `__. +- Chayton Bouwmeester. (2024). From South to North: Linking the Southern Ocean Winds to the + North Atlantic Deep Convection, MSc Thesis, 52p. + `Link to PDF `__. +- Ajai Shyam. (2024). ROTATIONAL STASIS. An exploratory study of how the Coriolis force affects the + AMOC using the VEROS Model, MSc Thesis, 70p. + `Link to PDF `__. +- Simon Storvig Winther. (2024). Convecting the dots. Processes of open-ocean deep convection in Veros and their + role in setting the properties of the Atlantic Meridional Overturning Circulation, MSc Thesis, 70p. + `Link to PDF `__. +- Rasmus Ranum Hansen. (2023). Solving the turbulence closure problem II + Determining the deep ocean stratification, MSc Thesis, 73p. + `Link to PDF `__. +- Jan Gärtner. (2023). Sea Ice modelling in Python, MSc Thesis, 54p. + `Link to PDF `__. - Magnus Quaade Oddershede. (2022). Modelling of ocean turbulence. Effects of resolution on predictive power of ocean models, BSc Thesis, 27p. `Link to PDF `__.