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Rapid operation underwater 3D printing construction method based on offshore wind power pile foundation
The invention belongs to the field of offshore wind power, and discloses a rapid operation underwater 3D printing construction method based on an offshore wind power pile foundation, which comprises the following steps: step 1, carrying out preparatory work; 2, two support devices are arranged on the wind power foundation in a sleeving mode, and the first support device and the second support device are arranged on the upper portion and the lower portion respectively; 3, the underwater 3D printing device is hoisted into water; 4, the underwater 3D printing device and the first support device are connected through a first connecting beam, and the underwater 3D printing device and the second support device are connected through a second connecting beam; and 5, the anti-scouring structure is printed and filled in the scouring pit through an underwater 3D printing device. The underwater 3D printing technology is applied to treating the scouring problem of the offshore wind power foundation, and the defects of traditional scouring prevention are overcome.
本发明属于海上风电领域,公开了一种基于海上风电桩基础的快速作业水下3D打印施工方法,包括:步骤1,进行准备工作;步骤2,在风电基础上套装两个支架装置,上下分别为第一支架装置和第二支架装置;步骤3,将水下3D打印装置吊入水中;步骤4,通过第一连接梁连接水下3D打印装置和第一支架装置,通过第二连接梁连接水下3D打印装置和第二支架装置;步骤5,通过水下3D打印装置在冲刷坑中打印填充防冲刷结构。本发明将水下3D打印技术应用于治理海上风电基础冲刷问题,弥补了传统防冲刷的不足。
Rapid operation underwater 3D printing construction method based on offshore wind power pile foundation
The invention belongs to the field of offshore wind power, and discloses a rapid operation underwater 3D printing construction method based on an offshore wind power pile foundation, which comprises the following steps: step 1, carrying out preparatory work; 2, two support devices are arranged on the wind power foundation in a sleeving mode, and the first support device and the second support device are arranged on the upper portion and the lower portion respectively; 3, the underwater 3D printing device is hoisted into water; 4, the underwater 3D printing device and the first support device are connected through a first connecting beam, and the underwater 3D printing device and the second support device are connected through a second connecting beam; and 5, the anti-scouring structure is printed and filled in the scouring pit through an underwater 3D printing device. The underwater 3D printing technology is applied to treating the scouring problem of the offshore wind power foundation, and the defects of traditional scouring prevention are overcome.
本发明属于海上风电领域,公开了一种基于海上风电桩基础的快速作业水下3D打印施工方法,包括:步骤1,进行准备工作;步骤2,在风电基础上套装两个支架装置,上下分别为第一支架装置和第二支架装置;步骤3,将水下3D打印装置吊入水中;步骤4,通过第一连接梁连接水下3D打印装置和第一支架装置,通过第二连接梁连接水下3D打印装置和第二支架装置;步骤5,通过水下3D打印装置在冲刷坑中打印填充防冲刷结构。本发明将水下3D打印技术应用于治理海上风电基础冲刷问题,弥补了传统防冲刷的不足。
Rapid operation underwater 3D printing construction method based on offshore wind power pile foundation
基于海上风电桩基础的快速作业水下3D打印施工方法
ZHU RONGHUA (Autor:in) / PAN YUFEI (Autor:in) / LAI ZONGYUAN (Autor:in) / ZHANG YUNING (Autor:in) / HU JIAJUN (Autor:in)
23.08.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E02D
FOUNDATIONS
,
Gründungen
/
B33Y
ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
,
Additive (generative) Fertigung, d. h. die Herstellung von dreidimensionalen [3D] Bauteilen durch additive Abscheidung, additive Agglomeration oder additive Schichtung, z. B. durch 3D- Drucken, Stereolithografie oder selektives Lasersintern
/
F03D
Windkraftmaschinen
,
WIND MOTORS
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