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that merge thermo-fluid dynamic laws, deep learning, and experimental data. A central goal is to overcome current limitations in TES operation and optimization, enabling discovery of new high-performance and
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the past years, DTU Chemical Engineering has made significant investments in digitalizing our experimental infrastructure, including a large-scale pilot plant and the Coatings Science and Technology
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). Based on experimental findings, we want to quantify the evolution of concrete stiffness and the development of internal stresses resulting from inherent material deformations, external loading, and
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cutting in the production facility. Establish a numerical model to simulate the glass cutting process. Design experimental measurements and assist in the integration of sensors in production. Acquire
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& microstructure with experimental observations of fatigue failure in AM samples under aggressive/corrosive environments. The goal is to establish causal pathways for understanding failure in AM components
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cell and stack using experimental data and advanced modeling techniques. Propose and implement improved operation modes to minimize degradation effects and enhance performance. As part of the PhD
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. The approach will be validated by application to industrial production at a partner company. The position includes both theoretical and experimental work and carries project as well as academic responsibilities
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production at a partner company. The position includes both theoretical and experimental work and carries project as well as academic responsibilities. The scientific work conducted must be positioned relative
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for the position. Our research areas At DTU Physics, we perform research in fundamental and applied physics areas and we use and develop state-of-the-art experimental and theoretical approaches. We have broad