Citation: | LIU Jinchao.Research on Key Technologies of Pile Driving Construction for Monopile[J].Southern Energy Construction,2022,09(01):47-51.. DOI: 10.16516/j.gedi.issn2095-8676.2022.01.007 |
LIU Jinchao.Research on Key Technologies of Pile Driving Construction for Monopile[J].Southern Energy Construction,2022,09(01):47-51.
[1] |
张新宇, 卜京. 清洁能源利用最大化的电力系统优化调度 [J]. 山东科学, 2021, 34(6): 83-90. DOI: 10.3976/j.issn.1002-4026.2021.06.011.
ZHANGX Y, BUJ. Optimal power system dispatch to maximize clean energy utilization [J]. Shandong Science, 2021, 34(6): 83-90. DOI: 10.3976/j.issn.1002-4026.2021.06.011.
|
[2] |
徐凯. 国内外风力发电现状及发展趋势 [J]. 中国高新技术企业, 2007(13): 77-81. DOI: 10.3969/j.issn.1009-2374.2007.13.040.
XUK. Current situation and development trend of wind power generation at home and abroad [J]. China High-Tech Enterprises, 2021, 34(6): 83-90. DOI: 10.3976/j.issn.1002-4026.2021.06.011.
|
[3] |
钟伟强. 国内外风力发电的概况 [J]. 风机技术, 2005(5): 44-46. DOI: 10.3969/j.issn.1006-8155.2005.05.017.
ZHONGW Q. General of wind power generation at home and abroad [J]. Compressor, Blower & Fan Technology, 2005(5): 44-46. DOI: 10.3969/j.issn.1006-8155.2005.05.017.
|
[4] |
王淼, 吴云青, 苏萌, 等. 单桩式基础应用于我国海上风电的可行性探讨 [J]. 电力建设, 2013, 34(4) :63-66. DOI: 10.3969/j.issn.1000-7229.2013.04.013.
WANGM, WUY Q, SUM, et al. Application of single pile foundation in offshore wind power in China [J]. Electric Power Construction, 2013, 34(4) :63-66. DOI: 10.3969/j.issn.1000-7229.2013.04.013.
|
[5] |
林毅峰, 陆忠民, 黄俊, 等. 海上风电机组高承台群桩基础设计特点及关键力学问题 [J]. 海洋技术学报, 2016, 35(5): 29-36. DOI: 10.3969/j.issn.1003-2029.2016.05.006.
LINY F, LUZ M, HUANGJ, et al. Design features and essential mechanical issues of high-rise cap with multiple pile foundation for offshore wind turbine generator [J]. Journal Of Ocean Technology, 2016, 35(5): 29-36. DOI: 10.3969/j.issn.1003-2029.2016.05.006.
|
[6] |
崇高. 海上风电多桩导管架式基础导管架优化[J]. 科技风, 2017(1): 128-129, 147. DOI: 10.19392/j.cnki.1671-7341.201701109.
CHONGG. Optimization of multi-pile jacket foundation for offshore wind power [J]. Technology Wind, 2017(1): 128-129, 147. DOI: 10.19392/j.cnki.1671-7341.201701109.
|
[7] |
周建华, 张金接, 邢占清. 超静孔隙水压力影响的海上风机桩基承载力高应变检测方法研究[J]. 中国水利水电科学研究院学报, 2012, 10(1): 17-22. DOI: 10.3969/j.issn.1672-3031.2012.01.003.
ZHOUJ H, ZHANGJ J, XINGZ Q. Study on the high strain technology for the bearing capacity of the offshore wind turbine pile foundations considering the effect of excess pore water pressure [J]. Journal of China Institute of Water Resources and Hydropower Research, 2012, 10(1): 17-22. DOI: 10.3969/j.issn.1672-3031.2012.01.003.
|
[8] |
熊根, 尚进, 和庆冬, 等. 海上风机单桩基础沉桩可打性及疲劳损伤分析 [J]. 水力发电, 2020, 46(11): 104-110. DOI: 10.3969/j.issn.0559-9342.2020.11.022.
XIONGG, SHANGJ, HEQ D, et al. Drivability and fatigue damage analysis of offshore wind turbine monopile [J]. Water Power, 2020, 46(11): 104-110. DOI: 10.3969/j.issn.0559-9342.2020.11.022.
|
[9] |
李春. 海上打桩过程动态监测与分析 [D]. 天津:天津大学, 2013. DOI: 10.7666/d.D440412.
LIC. Dynamic monitoring and analysis of offshore piling process [D]. Tianjin: Tianjin University, 2013. DOI: 10.7666/d.D440412.
|
[10] |
李春, 刘振纹, 祁磊. 渤海湾海上动力沉桩监测及分析 [J]. 天津科技, 2011(5): 106-109. DOI: 10.3969/j.issn.1006-8945.2011.05.043.
LIC, LIUZ W, QIL. Monitoring and analysis of offshore dynamic pile sinking in Bohai Bay [J]. Tianjin Science & Technology, 2011(5): 106-109. DOI: 10.3969/j.issn.1006-8945.2011.05.043.
|
1. |
雍迅. 基于船载式移动定位导向架的预制管桩沉桩施工控制探析. 珠江水运. 2025(03): 132-134 .
![]() | |
2. |
马兆荣,刘振韬,王金玺,张友虎. 统一硬化本构在海上风电大直径单桩桩-土分析中的应用. 南方能源建设. 2024(02): 68-81 .
![]() | |
3. |
贾付诚,贺瑞,相昀含. 打桩水下噪声水声阻尼器降噪试验研究. 海洋环境科学. 2024(03): 407-416 .
![]() | |
4. |
王耀武,郑康胜,张吉海,朱挺进,李大超,罗必雄,范永春,赵大文,池元清,刘东华,张永康. 海上风机单桩基础沉桩施工工艺与应用. 南方能源建设. 2024(04): 180-189 .
![]() | |
5. |
潘京敏,宋益民,李朱铠幸. 海上风电导管架基础沉桩施工技术研究. 工程技术研究. 2024(11): 87-89 .
![]() | |
6. |
郑灿,刘振韬,廖侃,张友虎. 砂土海床中大直径单桩桩-土相互作用. 南方能源建设. 2024(06): 124-134 .
![]() | |
7. |
刘亚杰,闫明辉. 海上风电单桩基础施工胎架受力分析. 水上安全. 2023(12): 73-75 .
![]() | |
8. |
刘亚杰,闫明辉. 基于MOSES的海上风电单桩基础起吊施工碰撞分析. 水上安全. 2023(13): 7-9 .
![]() | |
9. |
张京伟,李献军,贾震江,王丽艳,周华. 海上风电总承包项目设备交付精细化管理研究. 电力勘测设计. 2022(09): 1-6+82 .
![]() |