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DTSTART;TZID=Europe/Berlin:20261103T130000
DTEND;TZID=Europe/Berlin:20261103T170000
DTSTAMP:20260506T212132
CREATED:20260120T120828Z
LAST-MODIFIED:20260120T120828Z
UID:7796-1793710800-1793725200@blog.rwth-aachen.de
SUMMARY:[:en]NHR4CES - Introduction to Discontinuous Galerkin Methods for Flow Problems[:]
DESCRIPTION:Name: Introduction to Discontinuous Galerkin Methods for Flow Problems \nDate: November 3\, 2026 \nFormat: online \nMore information & registration \n  \n\n  \nDescription\n\n\nShort abstract:\n\n\nIn this course\, we cover the main building blocks to solve flow problems using the Discontinuous Galerkin (DG) method. Topics are\, amongst others\, the approximation by broken polynomials\, the formulation of DG schemes via different numerical fluxes. The course consists of a combination of presentations and hands-on exercises in which a simple DG flow solver is implemented and run on some test cases within our open-source code framework BoSSS. \nPrerequisites: a working BoSSS and JupyterLab installation \nFurther information: additional information will be announced to the participants in the week before the course. \nInformation about SDL Fluids
URL:https://blog.rwth-aachen.de/itc-events/en/event/nhr4ces-introduction-to-discontinuous-galerkin-methods-for-flow-problems/
LOCATION:Online\, Deutschland
CATEGORIES:HPC Events,NHR4CES Events
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BEGIN:VEVENT
DTSTART;TZID=Europe/Berlin:20261110T130000
DTEND;TZID=Europe/Berlin:20261110T170000
DTSTAMP:20260506T212132
CREATED:20260120T121105Z
LAST-MODIFIED:20260120T121105Z
UID:7798-1794315600-1794330000@blog.rwth-aachen.de
SUMMARY:[:en]NHR4CES - Introduction to Finite Element Methods for Flow Problems[:]
DESCRIPTION:Name: Introduction to Finite Element Methods for Flow Problems \nDate: November 10\, 2026 \nFormat: online \nMore information & registration \n  \n\n  \nDescription\n\n\nShort abstract:\n\nIn this course\, we cover various techniques to solve fluid flow problems using the finite element method. Topics of numerical instabilities that result from the underlying formulation will be presented. Furthermore\, we will review relevant stabilization techniques that are used to tackle such instabilities. The course consists of a combination of presentations and hands-on coding exercises in which the various methods are discussed and implemented within a basic finite element solver using Python. \nPrerequisites: Basic Python knowledge is advantageous. \nFurther information: additional information will be announced to the participants in the week before the course. \n\nInformation about SDL Fluids
URL:https://blog.rwth-aachen.de/itc-events/en/event/nhr4ces-introduction-to-finite-element-methods-for-flow-problems/
LOCATION:Online\, Deutschland
CATEGORIES:HPC Events,NHR4CES Events
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Berlin:20261120T140000
DTEND;TZID=Europe/Berlin:20261120T180000
DTSTAMP:20260506T212132
CREATED:20260120T121409Z
LAST-MODIFIED:20260120T121409Z
UID:7800-1795183200-1795197600@blog.rwth-aachen.de
SUMMARY:[:en]NHR4CES - Numerical Methods for Combustion[:]
DESCRIPTION:Name: Numerical Methods for Combustion \nDate: November 20\, 2026 \nFormat: online \nMore information & registration \n  \n\n  \nDescription\n\n\nShort abstract:\nIn the face of climate change and its undeniable threats to humanity\, the urgency for transitioning to CO2-free or carbon-neutral energy systems is paramount. While the future of energy conversion will be largely dominated by renewable sources\, such as wind and solar power\, combustion technologies will continue to play a crucial role in meeting the world’s growing energy demands\, especially in the near term. The expected rise in alternative fuels—such as biofuels\, e-fuels\, and green hydrogen—demands a deeper understanding of combustion processes to ensure cleaner\, safer\, and more efficient energy generation. Accurately simulating combustion\, however\, is a formidable challenge due to its inherently multi-physics nature\, involving complex interactions between turbulence\, chemistry\, and multi-species flows. \nThis workshop will focus on advanced numerical methods for modeling and simulating combustion phenomena in high-performance computing environments. Participants will gain insights into cutting-edge techniques and numerical methods\, covering topics such as combustion closure modeling\, load-balancing techniques\, soot formation\, and more. The workshop aims to gather different research groups\, providing a venue to exchange new ideas\, discuss challenges\, and expose this new research field to a broader community. \nFurther information: This training is given twice a year\, presenting our latest research\, to provide sufficient and up-to-date insights regarding the combustion modeling to the audience. \nInformation about SDL Energy Conversion
URL:https://blog.rwth-aachen.de/itc-events/en/event/nhr4ces-numerical-methods-for-combustion-3/
LOCATION:Online\, Deutschland
CATEGORIES:HPC Events,NHR4CES Events
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