首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >PROGRESS ON THE DEVELOPMENT OF A HOLISTIC COUPLED MODEL OF DYNAMICS FOR OFFSHORE WIND FARMS: PHASE II — STUDY ON A DATA-DRIVEN BASED REDUCED-ORDER MODEL FOR A SINGLE WIND TURBINE
【24h】

PROGRESS ON THE DEVELOPMENT OF A HOLISTIC COUPLED MODEL OF DYNAMICS FOR OFFSHORE WIND FARMS: PHASE II — STUDY ON A DATA-DRIVEN BASED REDUCED-ORDER MODEL FOR A SINGLE WIND TURBINE

机译:海上风电场动力学整体耦合模型的开发进展:第二阶段—基于数据驱动的单风轮机降阶模型研究

获取原文

摘要

At present, over 1500 offshore wind turbines (OWTs) are operating in the UK with a capacity of 5.4GW. Until now, the research has mainly focused on how to minimise the CAPEX, but Operation and Maintenance (O&M) can represent up to 39% of the lifetime costs of an offshore wind farm, mainly due to the assets' high cost and the harsh environment in which they operate. Focusing on O&M, the HOME Offshore research project (www.homeoffshore.org) aims to derive an advanced interpretation of the fault mechanisms through holistic multiphysics modelling of the wind farm. With the present work, an advanced model of dynamics for a single wind turbine is developed, able to identify the couplings between aero-hydro-servo-elastic (AHSE) dynamics and drive train dynamics. The wind turbine mechanical components, modelled using an AHSE dynamic model, are coupled with a detailed representation of a variable-speed direct-drive 5MW permanent magnet synchronous generator (PMSG) and its fully rated voltage source converters (VSCs). Using the developed model for the wind turbine, several case studies are carried out for above and below rated operating conditions. Firstly, the response time histories of wind turbine degrees of freedom (DOFs) are modelled using a full-order coupled analysis. Subsequently, regression analysis is applied in order to correlate DOFs and generated rotor torque (target degree of freedom for the failure mode in analysis), quantifying the level of inherent coupling effects. Finally, the reduced-order multiphysics models for a single offshore wind turbine are derived based on the strength of the correlation coefficients. The accuracy of the proposed reduced-order models is discussed, comparing it against the full-order coupled model in terms of statistical data and spectrum. In terms of statistical results, all the reduced-order models have a good agreement with the full-order results. In terms of spectrum, all the reduced-order models have a good agreement with the full-order results if the frequencies of interest are below 0.75Hz.
机译:目前,英国有超过1500台海上风力涡轮机(OWT)运行,容量为5.4GW。到目前为止,研究主要集中在如何最小化CAPEX上,但是运营和维护(O&M)可能占海上风电场整个生命周期成本的39%,这主要是由于资产的高成本和恶劣的环境他们在其中运作。 HOME Offshore研究项目(www.homeoffshore.org)专注于O&M,旨在通过对风电场进行整体多物理场建模来对故障机制进行高级解释。通过当前的工作,开发了用于单个风力涡轮机的动力学的高级模型,该模型能够识别空气-水-伺服-弹性(AHSE)动力学与传动系统动力学之间的耦合。使用AHSE动态模型建模的风力涡轮机机械组件,结合了变速直驱5MW永磁同步发电机(PMSG)及其全额定电压源转换器(VSC)的详细表示。使用针对风力涡轮机开发的模型,针对额定运行条件的上下进行了一些案例研究。首先,使用全阶耦合分析对风机自由度(DOF)的响应时间历史进行建模。随后,应用回归分析以便将自由度与生成的转子转矩(分析中的故障模式的目标自由度)相关联,从而量化固有耦合效应的水平。最后,基于相关系数的强度,得出了单个海上风力发电机的降阶多物理场模型。讨论了所提出的降阶模型的准确性,并根据统计数据和频谱将其与全阶耦合模型进行了比较。在统计结果方面,所有降阶模型与全阶结果都有很好的一致性。在频谱方面,如果感兴趣的频率低于0.75Hz,则所有降阶模型都与全阶结果有很好的一致性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号