台风场景下风浪流一体化模拟的漂浮式风力机多部件差异化载荷分析OA
Differential Load Analysis of Multiple Components for Floating Wind Turbines Based on Integrated Wind-wave-current Simulation Under Typhoon Scenarios
漂浮式风力机常位于深远海,受台风侵袭频繁,运动状态复杂且台风下风浪流耦合显著,其载荷分析十分困难,为此该文提出一种台风场景下基于风浪流一体化模拟的漂浮式风力机多部件差异化载荷分析方法.首先,针对台风发展过程中存在快速且剧烈的能量交换,风浪流海况难以准确模拟的问题,提出有限体积法海洋模型、海浪模拟模型、天气研究与预报模型;其次,针对漂浮式风力机受不同环境因素作用,导致各部件承受载荷的多样性,构建一种考虑多环境因素差异化影响的漂浮式风力机多部件载荷预测模型;此外,考虑到外部环境载荷对内部部件传递影响的耦合关系,基于 Paris 模型推导外部载荷对于齿轮机械载荷的传导机制,建立漂浮式风力机内外多部件联合可靠性分析模型.算例仿真表明,叶片、塔架与齿轮所受载荷对风速和风向的变化最为敏感,系泊张力受波浪的影响更为明显,受海流的影响较小;风速变化对于各部件可靠度均有较高影响.
Floating wind turbines are typically deployed in deep-sea regions where typhoons occur frequently,leading to complex dynamic behaviors and significant wind-wave-current interactions.These factors pose substantial challenges for accurate load analysis.To address this,this paper proposes a differentiated multi-component load analysis methodology for floating wind turbines under typhoon conditions based on fully coupled wind-wave-current simulations.First,to capture the rapid and intense energy exchanges during typhoon evolution and to overcome the limitations in accurately simulating marine environmental conditions,this paper develops a refined coupling approach integrating finite volume coastal ocean model(FVCOM),simulated wave model(SWAVE),and weather research and forecasting model(WRF)models.Second,recognizing that different components of the turbine are subject to distinct environmental forces,this paper constructs a component-specific load prediction mode that accounts for heterogeneous environmental influences.Furthermore,to assess the transmission of external environmental loads to internal mechanical components,this paper derives a load transfer mechanism based on the Paris model,and a joint reliability analysis framework for internal and external components is established.Simulation results demonstrate that the loads on the blades,tower,and gearbox are most sensitive to changes in wind speed and direction.The mooring tension is more significantly influenced by waves and less affected by ocean currents.Variations in wind speed have a substantial impact on the reliability of each component.
葛晓琳;沈文涛;符杨;马欣怡;刘璐洁;刘阳;任子旭
海上风电技术教育部工程研究中心(上海电力大学),上海市 杨浦区 200090上海电力大学电气工程学院,上海市 杨浦区 200090海上风电技术教育部工程研究中心(上海电力大学),上海市 杨浦区 200090上海电力大学电气工程学院,上海市 杨浦区 200090海上风电技术教育部工程研究中心(上海电力大学),上海市 杨浦区 200090海上风电技术教育部工程研究中心(上海电力大学),上海市 杨浦区 200090海上风电技术教育部工程研究中心(上海电力大学),上海市 杨浦区 200090
能源科技
漂浮式风力机风浪流耦合台风载荷预测
floating wind turbinewind-wave-current couplingtyphoonload predication
《中国电机工程学报》 2026 (16)
5982-5995,中插23,15
国家自然科学基金项目(52477106)上海市教育发展基金会和上海市教育委员会"曙光计划"(23SG49). Project Supported by National Natural Science Foundation of China(52477106)Shanghai Education Development Foundation and Shanghai Municipal Education Commission"Shuguang Program"(23SG49).
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