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reactors (CSTRs) plays a crucial role in next-generation energy storage technologies. Achieving high tap density, uniform morphology, and enhanced electrochemical performance depends strongly on the fluid
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, Thermal-Fluids & Energy. For more information regarding the Department and the Mechanical Engineering Program, please see the following link: https://ceas.uc.edu/academics/departments/mechanical-materials
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funding. References 1. Small-scale reconstruction in three-dimensional Kolmogorov flows using four-dimensional variational data assimilation (https://www.cambridge.org/core/journals/journal-of-fluid
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(strong interest in the experimental aspect) Junior applicants accepted: yes Your additional strengths: As the subject matter is highly multidisciplinary, solid knowledge of fluid mechanics, transfers
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modelling and planetary science. Each PhD project has a distinct focus but is designed for strong scientific interaction: PhD 1 | Deposition and evolution of ultrathin ice layers You will experimentally
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research experience in mechanical system Expertise in engineering design and experimental skill Experience in numerical simulation for fluid or combustion performance Publication track record is as one
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such as force balances. You should hold a PhD (or equivalent experience) in Aerodynamics or Fluid Mechanics. Experimental experience is essential; Excellent communication and writing skills are required
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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research . We are seeking a Research Associate to develop a high-fidelity Artificial Intelligence (AI) framework for modeling
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and hard biofouling – marine organisms that increase drag, weight and thermal resistance – potentially modifying the coupled electro-mechanical-fluid loading and causing fatigue and early failure
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by the European Commission under the Horizon Europe Framework Programme. The MODELAIR project proposes a combination of theoretical, experimental, numerical, and data-driven science to simulate