夏冰, 苗得胜, 张敏, 刘怀西, 葛文澎. 海上风机单桩基础稳流冲刷数值模拟[J]. 南方能源建设, 2023, 10(1): 81-87. DOI: 10.16516/j.gedi.issn2095-8676.2023.01.010
引用本文: 夏冰, 苗得胜, 张敏, 刘怀西, 葛文澎. 海上风机单桩基础稳流冲刷数值模拟[J]. 南方能源建设, 2023, 10(1): 81-87. DOI: 10.16516/j.gedi.issn2095-8676.2023.01.010
XIA Bing, MIAO Desheng, ZHANG Min, LIU Huaixi, GE Wenpeng. Numerical Simulation of Scour Process Around Offshore Wind Turbine Monopile Foundation in Steady Flow[J]. Southern Energy Construction, 2023, 10(1): 81-87. DOI: 10.16516/j.gedi.issn2095-8676.2023.01.010
Citation: XIA Bing, MIAO Desheng, ZHANG Min, LIU Huaixi, GE Wenpeng. Numerical Simulation of Scour Process Around Offshore Wind Turbine Monopile Foundation in Steady Flow[J]. Southern Energy Construction, 2023, 10(1): 81-87. DOI: 10.16516/j.gedi.issn2095-8676.2023.01.010

海上风机单桩基础稳流冲刷数值模拟

Numerical Simulation of Scour Process Around Offshore Wind Turbine Monopile Foundation in Steady Flow

  • 摘要:
      目的  桩基础冲刷是海上风电场建设及维护期间面临的重要技术问题,浪、流等环境载荷作用下形成的冲刷坑会降低桩土结构的稳定性,对风机结构安全造成不可忽视的影响。
      方法  采用CFD技术结合泥沙输运模型,针对稳流条件下,砂质海床上圆柱形单桩基础的冲刷问题进行数值模拟研究,通过对流动——冲刷非线性耦合问题的求解,观察了桩基础周围冲刷坑的发展过程,得到了冲刷坑深度的时变曲线。
      结果  计算结果表明,冲刷坑深度在冲刷开始阶段迅速增加,随后冲刷速度逐渐变慢;在16 min的计算时间内,冲刷深度达到0.81倍桩径。
      结论  根据冲刷深度的变化情况,认为对于处于砂质海床区域内的风电场,应当在基础施工期间考虑冲刷防护,通过增加防护结构等方法避免冲刷坑的出现和扩展。

     

    Abstract:
      Introduction  Scouring around pile foundation is an important technical problem in the construction and maintenance of offshore wind power plants. The scour hole developed under the environmental load like wave, current, etc. would reduce the stability of pile-soil structure and cause a non-negligible impact on the safety of the whole structure.
      Method  In this paper, CFD technique combined with sand transport model were employed, scour around cylinder pile in sandy seabed under steady current was numerically simulated and studied by solving the nonlinear coupling equations of flow and scour, the development process of scour hole around pile was observed, and the time-varying curve of scour depth was obtained.
      Result  The computing results show that the scour depth increases rapidly at the beginning of scouring, and then the process slows down gradually. In the calculation time of 16 minutes, the scour depth grows to 0.81 times the pile diameter.
      Conclusion  According to the development of scour depth, it is suggested that for the wind farm located in sandy seabed aera, scour protection should be considered during the construction period, and the methods such as increasing the protective structures are recommended to prevent scour forming and extending.

     

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