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structural health monitoring of structures immersed in heavy fluids, by continuing to develop the “Modal Strain Energy” and “Matched Field Processing” methods for detecting and locating a potential defect in
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postdoctoral researcher on the ERC Starting Grant project “FLOWSCOPY: Unravelling unsteady fluid flows in porous media with 3D X-ray micro-velocimetry”. You will perform groundbreaking experimental research
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a track record of contributing to publications and presentations and an ability to contribute ideas for new research projects. Experience in experimental geophysical fluid dynamics, proficiency in
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of Civil and Mechanical Engineering , section for Fluid Mechanics, Coastal and Maritime Engineering (FVM). The position will play an integral part of the project “SHORE: Simulating coastal HydrOdynamics and
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. You will mobilize the following skills and qualities: - Mastery of the transport of non-Newtonian fluids in porous media - Ability to design and use experimental devices - Ability for statistical
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engineering at the Technical University of Denmark (DTU), Department of Civil and Mechanical Engineering, section for Fluid Mechanics, Coastal and Maritime Engineering (FVM). The position will play an integral
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the past years, DTU Chemical Engineering has made significant investments in digitalizing our experimental infrastructure, including a large-scale pilot plant and the Coatings Science and Technology
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Description of the workplace Lund University, Department of Energy Sciences is a leading center for research in energy, fluid mechanics, and sustainability. The Division of Fluid Mechanics within
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EPSRC-funded project, MAPFSI that will be focused on developing experimentally-validated computational algorithms for fluid-structure interaction problems including multiphysics effect of electromagnetism
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. The overall goal of the project is to design a novel high temperature heat pump. You will be conducting Computational Fluid Dynamic (CFD) simulations and cycle analysis, which will be instrumental