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This position will focus on the structural health monitoring of marine structures, including vessel hulls and floating offshore wind turbines (FOWTs) using the inverse Finite Element Method (iFEM
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23rd March 2024 Languages English English English The Department of Marine Technologyhas a vacancy for a PhD Candidate in Structural Health Monitoring of Marine Structures Apply for this job See
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acoustics and signal analysis in the scientific forefront, in short distance to industrial applications. Several acoustic methods are used for non-destructive evaluation (NDE) and structural health monitoring
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structural health monitoring (SHM) of mechanical constructions. One family of such methods monitor the integrity of bar-, plate-, and pipe-like elastic structures by means of guided ultrasonic waves (GUW
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are used for non-destructive evaluation (NDE) and structural health monitoring (SHM) of mechanical constructions. One family of such methods monitor the integrity of bar-, plate-, and pipe-like elastic
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the international competitiveness of research groups. Implement and monitor administrative procedures and routines, in alignment with the university`s guidelines and rules. Maintain the employer’s responsibility in
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candidate that wants to work on ways to implement distributed systems, monitor their behaviour, and test and verify their correctness. The candidate should have an interest in writing dependable and secure
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candidate that wants to work on ways to implement distributed systems, monitor their behaviour, and test and verify their correctness. The candidate should have an interest in writing dependable and secure
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., within civilian seafloor monitoring and defense applications of underwater robotics. Field of research and the role of the PhD Fellow Most traditional deep learning models are designed to work with
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statistically significant data. Explore machine learning algorithms in the analysis of the measurement data, in order to develop AI tools for structural health monitoring applications. Use the measurement data