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UHPC-钢组合半潜式基础结构设计与稳定性研究

彭忐 程子龙 倪效欣 王伟强

水力发电2026,Vol.52Issue(7):102-107,6.
水力发电2026,Vol.52Issue(7):102-107,6.

UHPC-钢组合半潜式基础结构设计与稳定性研究

Design and Stability Analysis of UHPC-Steel Composite Semi-submersible Foundation Structure

彭忐 1程子龙 1倪效欣 2王伟强1

作者信息

  • 1. 河海大学水利水电学院,江苏 南京 210024
  • 2. 江苏省灌溉总渠管理处,江苏 淮安 223211
  • 折叠

摘要

Abstract

Traditional floating offshore wind turbine foundations are typically constructed entirely of steel,making them susceptible to steel corrosion and fatigue in deep and far-sea environments,which significantly reduces their service life.To enhance the structural performance and reduce the construction cost of floating foundations,an ultra-high-performance concrete(UHPC)-Steel hybrid semi-submersible foundation design suitable for 10 MW wind turbines is proposed.Based on the load and resistance factor design method for column-stabilized platforms specified in the DNV standards,and using the OO-Star semi-submersible foundation as a prototype,both all-steel and UHPC-steel hybrid semi-submersible foundations are designed under identical dimensional conditions.The finite element models of the all-steel and UHPC-steel hybrid foundations are established using SESAM software,and their stability under both operational and survival conditions is comparatively analyzed.Finally,a preliminary assessment of their economic differences is conducted.The results indicate that,while meeting the relevant design standards,the UHPC-Steel hybrid semi-submersible foundation demonstrates good technical feasibility and exhibits advantages in stability,durability and economy compared to the all-steel semi-submersible foundation.This study can provide valuable reference for the design of floating wind turbine foundations in deep and far-sea areas in China.

关键词

海上风电/半潜式基础/UHPC-钢结构/稳定性分析

Key words

offshore wind power/semi-submersible foundation/UHPC-steel structure/stability analysis

分类

建筑与水利

引用本文复制引用

彭忐,程子龙,倪效欣,王伟强..UHPC-钢组合半潜式基础结构设计与稳定性研究[J].水力发电,2026,52(7):102-107,6.

基金项目

浙江省科技计划项目"尖兵领雁+X"研发攻关计划(2024C03031) (2024C03031)

江苏省自然科学基金(BK20220986) (BK20220986)

水力发电

0559-9342

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