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curing experiments of the composite, till the build-up of residual stresses. These experiments are complemented with finite element simulations to understand the different steps in the processing
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(i.e. relationally interdependent systems) and encoding nonlinearities in these. The group has plentiful in-house simulation capabilities of numerical models and access to extensive real-world monitoring
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prevent over-consumption of fatigue life while balancing optimal production. This doctoral research will seek to speed up physics-based simulations of wind turbine structural responses through machine
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master thesis students. The project will be closely supervised by the PhD promotor and a postdoctoral researcher. Additionally, master's students will assist with data collection. Data will be gathered in
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project, which will consist of a Team or researchers of one postdoctoral assistant, 2 PhD students and 2 professors. Given the highly international character of the NitroScope project (25 partners from 14
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NitroScope project, which will consist of a Team or researchers of one postdoctoral assistant, 2 PhD students and 2 professors. Given the highly international character of the NitroScope project (25 partners