Centrifuge Modeling of Ring Anchors for Floating Offshore Wind Turbines
- Organization:
- Deep Foundations Institute
- Pages:
- 5
- File Size:
- 1628 KB
- Publication Date:
- Sep 1, 2024
Abstract
Offshore wind farms are one of the principal sources of renewable energy worldwide due to their large potential for energy generation and remote locations. In the U.S., a number of offshore wind farms have been operating for several years on the East Coast, while two potential locations have been approved on the West Coast. While the shallower waters in the Atlantic Ocean allow for building wind turbines with fixed foundations like monopiles, the substantial water depths of the Pacific Ocean, which can exceed 1,000 m (3,280 ft), require the use of floating turbines with mooring systems. In fact, 65% of the U.S. offshore wind resources are located in deep water regions where water depth is greater than 60 m (197 ft). Since foundation systems typically account for 15-20% of the total construction cost of floating offshore wind turbines, optimizing the design can have a large impact on their cost competitiveness with respect to other sources like onshore wind and solar.
A strategy that has received significant attention recently is to share anchors between floating wind turbines. This differs from the conventional configuration consisting of three nonshared anchors per turbine. The benefits of the shared anchor configuration are significant. For example, if every anchor in a wind farm is shared by three turbines, this reduces the number of required anchors by a factor of three. The capacity of offshore anchors depends on a number of factors including the loading inclination angle, embedment depth, soil properties and loading history. Of these, the former depends on the water depth, distance between turbines and mooring line configuration (i.e., taut versus catenary). This article focuses on assessing the effect of the loading angle on the monotonic capacity of ring anchors in sand.
Citation
APA: (2024) Centrifuge Modeling of Ring Anchors for Floating Offshore Wind Turbines
MLA: Centrifuge Modeling of Ring Anchors for Floating Offshore Wind Turbines . Deep Foundations Institute, 2024.