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and internal erosion in dikes. As a PhD researcher at TU Delft, you will connect fundamental fluid–soil interaction physics with computational modelling to contribute to safer flood defences. Job
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Develop advanced models to understand and predict piping and internal erosion in dikes. As a PhD researcher at TU Delft, you will connect fundamental fluid–soil interaction physics with
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between hydraulic processes and structural response represents a major knowledge gap. In this PhD project, you will focus on impact dynamics on structures, establishing direct links between unsteady
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18th September 2026 Languages English English English PhD Candidate in Hydraulic and Geotechnical Engineering of Embankment Dams Apply for this job See advertisement This is NTNU NTNU is a broad
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for the current climate is developed using hydraulic models. These scenarios describe the consequences of a flood in terms of flood depth, flood extend, economic damage and loss of life. These scenarios
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? We are looking for a PhD candidate to develop AI methods that extend current sets of flood scenarios derived from physical and numerical models, incorporate climate change effects, and then use
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. The PhD will be conducted in close collaboration with plant biologists and biomechanics researchers at INRAE who specialise in plant hydraulics and plant vulnerability to drought. These collaborations
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Offer Description Deploy detailed models of coupled ocean / sea ice processes, probe their turbulent interactions, compare with observations, and design parameterizations for global climate models. Job
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years. Your work tasks This PhD project focuses on the design and control of energy-efficient hydraulic systems with integrated safety functionalities. The overall objective is to develop innovative
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Researcher Profile First Stage Researcher (R1) Positions PhD Positions Application Deadline 31 Oct 2026 - 23:59 (Europe/Oslo) Country Norway Type of Contract Temporary Job Status Full-time Is the job funded