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Honeycomb type scour prevention and siltation promotion structure for offshore wind power single pile foundation
The invention discloses a honeycomb type scour prevention and siltation promotion structure for an offshore wind power single pile foundation. The honeycomb type scour prevention and siltation promotion structure comprises a honeycomb device and an anchoring system, the honeycomb device is of a flexible structure formed by welding a plurality of honeycomb lattice chambers through ultrasonic waves, and holes are formed in the side face of each honeycomb lattice chamber. During use, pulling force is applied to the honeycomb device through the anchoring system, so that the honeycomb device is unfolded around the offshore wind power single pile foundation to be in a grid state.
本发明公开一种用于海上风电单桩基础的蜂巢式防冲促淤结构,包括蜂巢装置和锚定系统,所述蜂巢装置是由若干个蜂巢格室通过超声波焊接形成的柔性结构,每个蜂巢格室的侧面均设有孔;使用时通过锚定系统对蜂巢装置施加拉力将蜂巢装置在海上风电单桩基础四周展开至网格状态。
Honeycomb type scour prevention and siltation promotion structure for offshore wind power single pile foundation
The invention discloses a honeycomb type scour prevention and siltation promotion structure for an offshore wind power single pile foundation. The honeycomb type scour prevention and siltation promotion structure comprises a honeycomb device and an anchoring system, the honeycomb device is of a flexible structure formed by welding a plurality of honeycomb lattice chambers through ultrasonic waves, and holes are formed in the side face of each honeycomb lattice chamber. During use, pulling force is applied to the honeycomb device through the anchoring system, so that the honeycomb device is unfolded around the offshore wind power single pile foundation to be in a grid state.
本发明公开一种用于海上风电单桩基础的蜂巢式防冲促淤结构,包括蜂巢装置和锚定系统,所述蜂巢装置是由若干个蜂巢格室通过超声波焊接形成的柔性结构,每个蜂巢格室的侧面均设有孔;使用时通过锚定系统对蜂巢装置施加拉力将蜂巢装置在海上风电单桩基础四周展开至网格状态。
Honeycomb type scour prevention and siltation promotion structure for offshore wind power single pile foundation
一种用于海上风电单桩基础的蜂巢式防冲促淤结构
ZHANG JINFENG (author) / LIANG JIAXIONG (author) / ZHANG QINGHE (author) / XU SIYUAN (author) / CHEN TONGQING (author) / ZANG ZHIPENG (author) / WANG GUANGYAO (author)
2021-06-04
Patent
Electronic Resource
Chinese
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