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networks, often emerging as a primary source of failure. The main challenge is to have numerical models that are precise and reliable enough to achieve the optimum design of adhesive GRE pipeline joints
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of Glass Reinforced Epoxy (GRE) pipelines networks, often emerging as a primary source of failure. The project aims to contribute to this global effort by studying the effect of different defects inside
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. The project will be organized around 3 main activities: • Understanding the diffusion paths and cavitation in thermoplastic liners. • Optimize the processing parameters for thermoplastic carbon-fiber walls
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the current storage and transportation technologies, to which we believe adequately engineered and designed thermoplastic carbon fiber technology can be beneficial. The project will be organized around 3 main
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expertise incorporates three main areas: Design of materials in representative environments of energy applications: In-situ testing facilities and characterization techniques (Generation of unique databases
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the usage of existing solutions in demanding Energy and Mobility applications. Our laboratory expertise incorporates three main areas: Design of materials in representative environments of energy applications
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applications. Our laboratory expertise incorporates three main areas: Design of materials in representative environments of energy applications: In-situ testing facilities and characterization techniques
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providing innovative composite solutions or optimizing the usage of existing solutions in demanding Energy and Mobility applications. Our laboratory expertise incorporates three main areas: Design of
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The ongoing accumulation of greenhouse gas (GHG) concentrations in the atmosphere from various anthropogenic sources is a global concern. Fossil fuels are the primary source of GHG emissions and
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depends on the background of a suitable candidate. The main topics of the group in the past few years were generative modeling, 3D reconstruction, image-editing, and deep learning using 3D data. More