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Simulation Framework The Computational Biology (CoBi) group, led by Prof. Dagmar Iber, develops data-driven, mechanistic models of biological systems using advanced imaging and computational tools. Our group
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Your Job: JuPedSim https://jupedsim.org is a platform for simulating people flows, developed in C++ with a Python API and a C interface to SUMO https://eclipse.dev/sumo/ . A React-based web
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. Develop efficient and robust numerical techniques for coupled physical domains, ensuring stability and conservation of key quantities such as energy and charge. Translate fundamental challenges
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. These activities are underpinned by advanced numerical simulation, data-driven methods, and high-performance computing, enabling high-fidelity analysis and predictive modelling of next-generation energy systems
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for fluid dynamics, mixing, and reaction kinetics in the CSTR. Implement advanced numerical schemes and perform high-resolution CFD simulations of two-phase flow. Optimize impeller geometry and reactor design
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model tests on granular flows.PhD position 2# is supported by an Advanced Grant of the European Research Council (ERC). The ideal candidate will focus on constitutive modelling and numerical simulations
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of the formal document. For additional information on this matter candidates are advised to check the website of the Directorate-General for Higher Education (DGES): https://www.dges.gov.pt/en/pagina/degree-and
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PhD Research Fellow in ML-assisted reservoir characterization/modelling for CO2 storage (ref 290702)
, preferably in seal/reservoir/overburden heterogeneities, static and dynamic reservoir modelling, and flow simulation. The candidate will work in a team of geologists, geophysicists, geochemists and staff with
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unmatched economic and social impact across the state by providing numerous academic and professional opportunities. Below you will find the details for the position currently available at UACCM including any
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to inform and enhance reactive flow simulators, ultimately contributing to a better understanding of the impacts of dissolved CO2 on fluid flow dynamics and rock reactivity at larger scales within