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the interaction between wind farms and the atmospheric boundary layer using a combination of wind-tunnel experiments, field measurements, and advanced numerical simulations. The ultimate goal is to gain fundamental
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numerical modelling. The training plan includes participation in specialised courses, international conferences, and internships, aiming to develop advanced skills in SHM, fluid–structure interaction, and
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flexibility & structural architecture of adhesins in host-ESKAPE interactions - The University of Manchester (UK), Supervisor: Prof. Christos Pliotas DC10 - Structural studies of transport and binding
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. Spectral dynamics of the conditional Lyapunov vector (https://www-cambridge-org.sheffield.idm.oclc.org/core/journals/journal-of-fluid-mechanics/article/spectral-dynamics-and-spatial-structures
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). Research Responsibilities Lead the experimental design to simulate early Archean conditions. This includes modeling polymerization and fluid-organic interactions, considering 'Possible Archean' Ocean
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du plasma n'est pas sans influence sur la structure de l'écoulement [11]. La génération d'une seule décharge est suffisante pour faire éclater la zone laminaire du jet et entraver la propagation des
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du plasma n'est pas sans influence sur la structure de l'écoulement [11]. La génération d'une seule décharge est suffisante pour faire éclater la zone laminaire du jet et entraver la propagation des
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-ray, neutron, and charged-particle flux; material selection for structural and functional reactor components; exploration of advanced and conventional cooling systems; energy extraction and conversion
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advanced physical and computational approaches. Research interests may include fluid–structure interactions, offshore renewable energy systems, and infrastructure challenges facing large cities. The location
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or similar projects (K3, GEEAUDE) will be conducted. In a final phase, we will focus on speleogenesis, i.e., the emergence of karst structures due to fluid-rock interactions, a typical case of self