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prediction of BESS’s electric and thermal behaviours. Optimization of BESS design for high energy density, durability and safety. Validation of models by benchmarking with cell and system level measurements
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of this innovative system. Your main tasks include: Developing thermal models of convective heat transfer in ventilated cavities and their coupling to water-based heat exchangers. Extending these to system-level
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take a leading role in the modeling and validation of this innovative system. Your main tasks include: Developing thermal models of convective heat transfer in ventilated cavities and their coupling
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batteries (solid-state) via a physics-informed data-driven approach. Accurate prediction of BESS’s electric and thermal behaviours. Optimization of BESS design for high energy density, durability and safety
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Environment Testing: Support and supervise comprehensive characterization studies including thermal cycling stability, radiation exposure effects, and long-term vacuum stability of functionalized chips
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facilities. Space Environment Testing: Support and supervise comprehensive characterization studies including thermal cycling stability, radiation exposure effects, and long-term vacuum stability
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research groups in the following seven departments: Materials Mechanics Management & Design, Engineering Structures, Geoscience and Engineering, Geoscience and Remote Sensing, Transport & Planning, Hydraulic
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& Design, Engineering Structures, Geoscience and Engineering, Geoscience and Remote Sensing, Transport & Planning, Hydraulic Engineering and Water Management. Click here to go to the website of the Faculty
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Mechanics Management & Design, Engineering Structures, Geoscience and Engineering, Geoscience and Remote Sensing, Transport & Planning, Hydraulic Engineering and Water Management. Click here to go to the
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research groups in the following seven departments: Materials Mechanics Management & Design, Engineering Structures, Geoscience and Engineering, Geoscience and Remote Sensing, Transport & Planning, Hydraulic