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Hybrid Block-Structured Grids for Complex Ocean Domains

Title data

Stahl, Julian ; Schmalfuß, Jonathan ; Aizinger, Vadym ; Grosso, Roberto:
Hybrid Block-Structured Grids for Complex Ocean Domains.
In: Proceedings of the 2026 SIAM International Meshing Roundtable. - Philadelphia, USA , 2026 . - pp. 203-216
DOI: https://doi.org/10.1137/1.9781611979138.16

Official URL: Volltext

Project information

Project title:
Project's official title
Project's id
Performance-optimiertes Co-Design von Ozeanmodellierungssoftware auf FPGAs
502500606
Linux-Cluster zum wissenschaftlichen Hochleistungsrechnen
523317330

Project financing: Deutsche Forschungsgemeinschaft

Abstract in another language

We propose a new method to automatically generate hybrid block-structured grids (hBSG) for complex ocean domains suited for numerical simulations. hBSGs may contain structured or unstructured blocks. They combine the performance benefits of block-structured grids with the ability of unstructured grids to control the local resolution and accurately represent the domain geometry. We discuss three different approaches to determine the placement of structured and unstructured grid blocks. The mesh generation schemes are optimized to guarantee element quality, thereby ensuring numerical stability, while also providing local resolution in accordance with the physical properties of the flow system, thereby minimizing the CFL restrictions on the time step. We evaluate and compare the quality of the meshes with previous methods and show that the performance benefits offered by hBSGs are comparable to those of standard block-structured grids.

Further data

Item Type: Article in a book
Refereed: Yes
Institutions of the University: Faculties > Faculty of Mathematics, Physics und Computer Science > Department of Mathematics > Chair Scientific Computing
Faculties > Faculty of Mathematics, Physics und Computer Science > Department of Mathematics > Chair Scientific Computing > Chair Scientific Computing - Univ.-Prof. Dr. Mario Bebendorf
Faculties > Faculty of Mathematics, Physics und Computer Science > Department of Mathematics > Chair Numerics of Partial Differential Equations
Faculties > Faculty of Mathematics, Physics und Computer Science > Department of Mathematics > Chair Numerics of Partial Differential Equations > Chair Numerics of Partial Differential Equations - Univ.-Prof. Dr. Vadym Aizinger
Profile Fields > Advanced Fields > Nonlinear Dynamics
Research Institutions > Central research institutes > Bayreuth Research Center for Modeling and Simulation - MODUS
Research Institutions > Central research institutes > Forschungszentrum für Wissenschaftliches Rechnen an der Universität Bayreuth - HPC-Forschungszentrum
Result of work at the UBT: Yes
DDC Subjects: 000 Computer Science, information, general works > 004 Computer science
500 Science > 510 Mathematics
500 Science > 550 Earth sciences, geology
Date Deposited: 10 Jun 2026 05:46
Last Modified: 10 Jun 2026 08:56
URI: https://eref.uni-bayreuth.de/id/eprint/97895