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Field
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. The project combines advanced computational mechanics, nonlinear finite element analysis and fluid–structure interaction to address critical challenges in civil protection and societal resilience. About the
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will be the Head of Department. About the project This PhD position is part of the WP4 Digital twin and asset management concerning multiscale wind simulation that involves modelling wind flow across
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, FCVD creates a liquid-like layer that fills narrow trenches on substrates before solidifying into films. We will model this across multiple scales, from atoms to fluid flow, using quantum chemistry
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an aerodynamic bird collision avoidance model, combining computational fluid dynamics (CFD) of the flow around wind turbines with the aerodynamic characteristics of flying birds to predict collision risk. This
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of critical infrastructure in a rapidly changing security environment. The project is carried out with an accompanying PhD project in computational mechanics that will focus on numerical simulation of fluid
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while receiving guidance from a senior mentor, actively contribute to the intellectual life of the department, and publish the results of their research during the period of appointment. This role is not
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of critical infrastructure in a rapidly changing security environment. The project is carried out with an accompanying PhD project in computational mechanics that will focus on numerical simulation of fluid
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, structural, or fluid mechanics. adjoint methods, automatic differentiation, or differentiable programming. scientific software development, including reproducible workflows and version control. high
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messengers transported by the flow or even the pressure of the fluid itself. In an interdisciplinary team, you will either develop theoretical models of the feedback between flow and network architecture