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Odense. The research of the MSO group is focused on development of advanced simulation and optimisation methods for multiphysics, fluid flow and conjugate heat transfer problems, but also covers
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industrial and academic partners. The overall goal of the project is to optimize the design of water eletrolyzers for efficient green energy production. You will be conducting Computational Fluid Dynamic (CFD
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at the building and neighbourhood levels. By joining our forward-thinking section Digital Building Technologies at DTU Construct, you will gain hands-on experience in implementing and scaling innovative solutions
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perform Lab-3DµXRD experiments to follow microstructure evolution during annealing and stress-corrosion tests on aluminum samples processed using different laser powder bed fusion parameters to perform
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at the intersection of digital building technologies, data science, and energy systems. By joining our forward-thinking section Digital Building Technologies at DTU Construct, you will gain hands-on experience in
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equivalent) in Innovation Management, Circular Economy, Business Engineering, Environmental Engineering, Production Engineering, Design & Innovation, or related field Experience with business modelling tools
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PhD degree (or equivalent) in Environmental Engineering, Industrial Ecology, Design for Sustainability, Circular Economy, Remanufacturing, or a closely related field Experience with developing digital
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PhD degree (or equivalent) in Environmental Engineering, Industrial Ecology, Design for Sustainability, Circular Economy, Remanufacturing, or a closely related field Experience with developing digital
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PhD degree (or equivalent) in Manufacturing Engineering, AM, or related field Experience with metrology of small to large scale laser-based metal AM components (e.g. DED, powder-bed fusion) Experience
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qualification, you must hold an MSc degree (or equivalent) within Materials Science, Mechanical Engineering, or related field Experience with corrosion and metallurgy, electrochemical methods, microstructure