|本期目录/Table of Contents|

[1]汪宏伟.风机基础环松动原因分析和注浆加固[J].中国安全生产科学技术,2016,12(3):104-107.[doi:10.11731/j.issn.1673-193x.2016.03.019]
 WANG Hongwei.Cause analysis and grouting reinforcement on loose foundation ring of wind turbine[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2016,12(3):104-107.[doi:10.11731/j.issn.1673-193x.2016.03.019]
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风机基础环松动原因分析和注浆加固
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《中国安全生产科学技术》[ISSN:1673-193X/CN:11-5335/TB]

卷:
12
期数:
2016年3期
页码:
104-107
栏目:
现代职业安全卫生管理与技术
出版日期:
2016-03-30

文章信息/Info

Title:
Cause analysis and grouting reinforcement on loose foundation ring of wind turbine
文章编号:
1673-193X(2016)-03-0104-04
作者:
汪宏伟
(国华能源投资有限公司,北京 100007)
Author(s):
WANG Hongwei
(Guohua Energy Investment Corporation, Beijing 100007, China)
关键词:
风机基础加固钻孔注浆
Keywords:
wind turbine foundation reinforcement drilling grouting
分类号:
X941
DOI:
10.11731/j.issn.1673-193x.2016.03.019
文献标志码:
A
摘要:
风机基础环是连接塔筒和混凝土基础的关键部件。结合我国东部某风电场出现的基础环故障,从设计、施工及运行等方面,对风机基础环松动的原因进行了调查分析,认为基础环下法兰处混凝土存在损伤破坏。采取注浆方法对基础进行加固,详细阐述了水钻孔排查、灌浆材料选择、清孔、注浆等关键工序。可供风机基础设计、施工及处理同类事故参考。
Abstract:
The foundation ring of wind turbine is a key component connecting the tower and concrete foundation. Combined with the fault of foundation ring in a wind farm located at the east of China, the reasons about loose foundation ring of the wind turbine were investigated and analyzed from the aspects of design, construction and operation etc., and it showed that the damage and fracture of concrete existed in the flange under the foundation ring. The grouting method was used to reinforce the foundation, and the key processes such as water drilling investigation, grouting material selection, hole cleaning, grouting and so on were described in detail. It can provide reference for the design and construction of wind turbine, as well as the treatment of similar accidents.

参考文献/References:

[1]康明虎.某风电场风机基础故障分析及处理[J].可再生能源,2014(6): 809-812. KANG Minghu. Analysis and treatment of wind turbine foundation fault in a wind farm[J]. Renewable Energy Resources, 2014(6): 809-812.
[2]王帅.自然环境对风力发电机组安全运行的影响分析[J].中国安全生产科学技术,2009(6): 214-218. WANG Shuai. Analysis of impact of safety operation ofwind generating set by natural environment[J].Journal of Safety Science and Technology,2009(6): 214-218.
[3]王宇航,杨乃莲,任智刚,王善文,张森.风电行业安全生产风险特征与对策[J].中国安全生产科学技术,2013,9(8): 156-160. WANG Yuhang, YANG Nailian,REN Zhigang, WANG Shanwen, ZHANG Sen. Risk characters and countermeasures on work safety of wind energy industry[J]. Journal of Safety Science and Technology,2013,9(8): 156-160.
[4]田静,许新勇,刘宪亮. 风力发电机基础接触问题研究[J]. 水电能源科学, 2010, 28(12): 154-156. TIAN Jing, XU Xinyong, LIU Xianliang. Study on contact nonlinearity of wind turbine generator foundation[J].Water Resources and Power, 2010, 28(12): 154-156.
[5]王浩, 王炽欣.风电场风力发电机组塔架基础设计研究[J].电网与清洁能源, 2008, 24(3): 45-49. WANG Hao, WANG Chixin.Research on the design of wind turbine generators tower foundation in wind power plant[J].Power System and Clean Energy, 2008, 24(3): 45-49.
[6]Pekka Maunu. Design of Wind Turbine Foundation Slabs[D].Lulea: Lulea University of Technology, 2008
[7]Henrik Svensson. Design of foundations for wind turbines[D]. Sweden, Lund niversity,2010.
[8]Mohamed Al Satari, Saif Hussain, S.E. Vibration based wind turbine tower foundation design utilizing soil-foundation-structure interaction [A]. The 14th World Conference on Earthquake Engineering October 12-17, 2008, Beijing, China.
[9]张清远.浅谈风力发电机基础地基处理方法的选择[J].太阳能, 2006(5): 31-33. ZHANG Qingyuan. Discussion on the selection of foundation treatment method of wind power generator[J]. Solar energy, 2006(5): 31-33.
[10]李艳慧.风电基础混凝土与钢环粘结应力传递试验及分析[D].湖南: 湖南科技大学, 2012.
[11]张立英.风机基础结构数值模拟及优化设计研究[D].天津: 天津大学, 2009.
[12]FD 003-2007,风电机组地基基础设计规定(试行)[S].2007.
[13]康明虎,徐慧,黄鑫.基础环形式风机基础局部损伤分析[J].太阳能学报,2014,35(4): 583-588. KANG Minghu, XU Hui, HUANG Xin.Local damage analysis of near foundation ring in wind turbine foundation[J].Acta Energiae Solaris Sinica, 2014,35(4): 583-588.

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备注/Memo

备注/Memo:
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更新日期/Last Update: 2016-04-15