A review of foundations of offshore wind energy convertors: Current status and future perspectives

Обзор фундаментов офшорных ветроэнергетических установок: современное состояние и перспективы развития
Ki‐Yong Oh, Woochul Nam, Moo Sung Ryu, Ji-Young Kim, Bogdan I. Epureanu
2018-03-08

dynamic soil responseoffshore foundation typesoffshore wind energy convertersoffshore wind turbine foundationssoil-structure interaction
This paper reviews foundations for offshore wind energy convertors considering the significant growth of offshore wind energy since the early 2000s. The characteristics of various foundation types (i.e., gravity, pile, suction caisson, and float type) and the current status of field application are discussed. Moreover, the mechanical characteristics of soil are described in the sense that these characteristics including modulus, strength, damping, and modulus degradation of soil play critical roles for the design of offshore foundations. By using these mechanical properties of soil, theoretical studies to consider structure-soil interaction are classified (into equivalent spring models, distributed spring models, and continuous element models) and explained. Field and laboratory experiments on the response of structure embedded in soil to static and dynamic loads are discussed. Based on the review of previous studies, directions for future research and study on offshore wind turbine are suggested.
1
Field and laboratory experiments examine the static and dynamic responses of structures embedded in soil.
2
Soil modulus, strength, damping, and modulus degradation are identified as critical mechanical properties for offshore foundation design.
3
Structure–soil interaction theories are classified into equivalent spring, distributed spring, and continuous element models based on soil mechanical properties.
4
The review categorizes offshore wind turbine foundations into gravity, pile, suction caisson, and floating types, summarizing their field-application status.
5
The review identifies future research directions for offshore wind turbine foundations based on gaps in existing theoretical and experimental studies.

offshore wind turbine foundations and their supporting soil

foundation types, soil mechanical properties, structure–soil interaction, and static and dynamic load responses relevant to offshore wind turbine design

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2018-03-08
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Authors
Ki‐Yong Oh
Woochul Nam
Moo Sung Ryu
Ji-Young Kim
Bogdan I. Epureanu
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