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wave equations. In the project, we will develop a new mathematical and computational framework that combines PDE-based modelling with ideas from data-driven reduced-order modelling. The aim is to obtain
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of repeatedly solving wave equations. In the project, we will develop a new mathematical and computational framework that combines PDE-based modelling with ideas from data-driven reduced-order modelling. The aim
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reduce wave energy and flood risk while also supporting biodiversity and carbon storage. However, there is limited understanding of how effectively restored saltmarshes provide coastal protection compared
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dataset for the neural networks. A PINN model is developed for the potential flow model to obtain up to second-order nonlinear solutions for water wave interactions with marine structures. The developed
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heat waves, impacting ecosystem carbon storage worldwide. Join the Institute for Biodiversity and Ecosystem Dynamics (IBED) in this interdisciplinary project to uncover how vegetation traits and
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more reliable designs. The student will use advanced numerical simulations at KU Leuven to model the impact of large waves on OFPV structures, capturing key processes such as wave breaking, overtopping
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BAM Bundesanstalt für Materialforschung und -prüfung | Berlin, Berlin | Germany | about 2 months ago
on the Scaled Boundary Finite Element Method (SBFEM) – for modelling the propagation of guided ultrasonic waves in pipelines The task includes the refinement of existing SBFEM implementations and their extension
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to investigate electromagnetic wave propagation in time-varying THz waveguides. Job description Develop numerical simulation frameworks for time-varying electromagnetic systems, modeling ultrafast refractive-index
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their detection, (iv) enabling better analysis of exoplanetary radio emissions. • Use of data from the Juno/Waves mission and solar wind propagation models • Understanding the visibility biases of the various
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pipelines to monitoring batteries in electric vehicles, ultrasonic measurements let us “see” inside materials without damaging them. Yet interpreting the resulting signals is far from straightforward: waves