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VĂCĂREANU, Vlad (author)
This work presents a numerical study on the dynamic response of monopile-supported offshore wind turbines (OWTs) under seismic loading conditions. For this purpose the realistic design ofa 8 MW OWT is considered as ideally located in a layered, non-liqueable site off the coast of Japan. This choice allowed to employ available site...
master thesis 2019
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Jolink, Chris (author)
Pile driving can cause plastic deformation to the head of the driven pile, which in turn can lead to connectivity issues when the superstructure is installed. Moreover, plastic deformation reduces the estimated service life of the structure. Therefore, it is necessary to monitor the strain levels during the installation in order to detect if the...
master thesis 2018
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Tzanidakis, George (author)
In the Netherlands the design of a movable bridge and machinery part is based on the design standard NEN 6786:2001 (2001). When the bridge is in motion the calculations for the machinery part focus on the dynamic loads (torque) generating at the motor shaft. The calculation of these loads is carried out using tabulated formulas of the standard,...
master thesis 2018
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Stijntjes, Thomas (author)
master thesis 2018
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Anderson, M.C. (author)
In the 26 years since the first offshore wind farm was installed in Vindeby, Denmark, the offshore wind industry has undergone remarkable growth. Recently, this growth has accelerated, advancing farms rapidly into deeper water and utilizing larger turbines. As offshore wind farm developers continue to look towards heavier, higher capacity...
master thesis 2017
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Haarman, Mirthe (author)
The demand for offshore wind farms is developing rapidly due to the increased demand for renewable energy. Installation of foundation piles for offshore wind, however, are accompanied by a serious by-product which is the high underwater noise levels emitted during the pile-driving process. Current mitigation methods have proven to decrease the...
master thesis 2017
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