风电机组岩石锚杆式加固基础受力性能现场监测研究
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作者:
作者单位:

1.山东建筑大学,土木工程学院,济南 250101;2.山东建筑大学,建筑结构加固改造与地下空间工程教育部重点实验室,济南 250101;3.山东建筑大学,地铁保护研究所,济南 250101;4.山东建和土木工程咨询有限公司,济南 250013;5.山东大卫国际建筑设计有限公司,济南 250100

作者简介:

魏焕卫(1974- ),男,博士,教授,主要从事基础加固研究,E-mail:13181718169@163.com。
WEI Huanwei (1974- ), PhD, professor, main research interest: foundation reinforcement, E-mail: 13181718169@163.com.

通讯作者:

郑晓(通信作者),男,博士,E-mail:zhengxiao_sdu@126.com。

中图分类号:

TU476

基金项目:

山东省自然科学基金(ZR2019MEE021)


Field monitoring on mechanical performance of rock bolt reinforced foundation of wind turbine
Author:
Affiliation:

1.School of Civil Engineering, Shandong Jianzhu University, Jinan 250101, P. R. China;2.Key Laboratory of Building Structural Retrofitting and Underground Space Engineering, Shandong Jianzhu University, Jinan 250101, P. R. China;3.Subway Protection Research Institute, Shandong Jianzhu University, Jinan 250101, P. R. China;4.Shandong Jianhe Civil Engineering Consulting Co., Ltd., Jinan 250013, P. R. China;5.Shandong Dawei International Architecture Design Co., Ltd., Jinan 250100, P. R. China

Fund Project:

Natural Science Foundation of Shandong Province (No. ZR2019MEE021)

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    摘要:

    针对风机运行期间所受荷载的复杂性,依托威海某风电机组基础加固项目,提出一种系统监测方法,结合现场环境,评估加固基础的性能提升效果。从施工阶段到运行阶段,采集加固基础的塔筒应变、焊钉应变及锚索轴力等数据,研究风机加固基础在不同工况下的受力响应,并开展相关性分析,探讨基础加固后的性能提升效果及荷载传递机理。结果表明:加固区中各构件受力响应具有趋势相似性与幅值差异性,受力改善效果明显且均具有较大的安全度;该加固方法利用外包混凝土和焊接焊钉改变了结构受力边界,增加了底层塔筒的约束刚度,使上部传递荷载重新分配,实现剪力的分担与传递,保证塔筒与混凝土共同变形。基于此加固方案提出的系统监测评估方法可以有效、及时地掌握加固系统各构件的受力状态,保证后续风电机组运行安全。该加固方案改善了基础、岩石锚杆及法兰的受力状态,基础整体受力性能得到保证。

    Abstract:

    The loading condition on the wind turbine during operation is complex. Therefore, based on a wind turbine foundation reinforcement project in Weihai, a systematic monitoring method is proposed to evaluate the performance improvement effect of the reinforced foundation in combination with the field environment. From the construction stage to the operation stage, the tower strain, welding stud strain, and anchor cable axial force of the reinforced foundation are collected to study the stress response of the wind turbine reinforced foundation under different working conditions, conduct correlation analysis, and to explore the performance improvement effect and load transfer mechanism after foundation reinforcement. The results show that the stress response of each component in the reinforcement area has trend similarity and amplitude difference, and the stress improvement effect is obvious with a large safety margin. The reinforcement method changes the stress boundary of the structure by using outsourcing concrete and welding studs, increases the restraint stiffness of the bottom tower, redistributes the upper transferred load, shares the transferred shear force, and ensures the common deformation of the tower and concrete.The systematic monitoring and evaluation method based on this reinforcement scheme can effectively and timely assess the stress state of each component of the reinforcement system and ensure the safety of the subsequent wind turbine operation. The reinforcement scheme improves the stress state of the foundation, rock bolt and flange, and the overall mechanical performance of the foundation is guaranteed.

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魏焕卫,雷树立,宋志鑫,陈朝伟,惠俊梅,宋鹏,郑晓.风电机组岩石锚杆式加固基础受力性能现场监测研究[J].土木与环境工程学报(中英文),2025,47(5):177-185. WEI Huanwei, LEI Shuli, SONG Zhixin, CHEN Chaowei, HUI Junmei, SONG Peng, ZHENG Xiao. Field monitoring on mechanical performance of rock bolt reinforced foundation of wind turbine[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2025,47(5):177-185.10.11835/j. issn.2096-6717.2023.089

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  • 收稿日期:2023-04-17
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  • 在线发布日期: 2025-11-03
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