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高速铁路声屏障单元板气动疲劳载荷模型 被引量:3
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作者 赵允刚 李啸宇 +1 位作者 宁智 吕明 《北京交通大学学报》 CAS CSCD 北大核心 2021年第6期58-64,共7页
针对高速铁路声屏障会受到高速列车通过时产生的气动载荷的反复冲击问题,根据高速铁路声屏障单元板承受气动载荷冲击能力评估的需要,对高速铁路声屏障单元板进行气动疲劳载荷模型研究.建立了高速铁路声屏障表面压力测试系统,利用不同条... 针对高速铁路声屏障会受到高速列车通过时产生的气动载荷的反复冲击问题,根据高速铁路声屏障单元板承受气动载荷冲击能力评估的需要,对高速铁路声屏障单元板进行气动疲劳载荷模型研究.建立了高速铁路声屏障表面压力测试系统,利用不同条件下声屏障表面气动载荷现场测试数据,研究承受最大气动载荷的声屏障目标单元板;在此基础上,给出了用于声屏障单元板气动疲劳试验的两种气动疲劳载荷施加方案,建立针对这两种气动疲劳载荷施加方案并同时考虑高速列车气流冲击和横风作用的声屏障单元板气动疲劳载荷模型.结果表明:当列车所受横风风速不变时,随着列车车速的增加,动态载荷和动态载荷变化频率皆随高速列车车速的增加而增大;相比较,动态疲劳载荷受车速的影响更大. 展开更多
关键词 高速铁路 声屏障 单元板 气动疲劳载荷
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Smart load control of the large-scale offshore wind turbine blades subject to wake effect 被引量:1
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作者 Mingming Zhang Bin Tan Jianzhong Xu 《Science Bulletin》 SCIE EI CAS CSCD 2015年第19期1680-1687,共8页
The smart fatigue load control of a large-scale wind turbine blade subject to wake effect was numerically investigated in this paper. The performances were evaluated and compared at selected typical wind speeds within... The smart fatigue load control of a large-scale wind turbine blade subject to wake effect was numerically investigated in this paper. The performances were evaluated and compared at selected typical wind speeds within the whole operational region under three turbine layout strategies, i.e., column, row and array arrangements, together with a single turbine case as reference, utilizing our newly developed aero-servo-elastic platform. It was observed that not only the blade fatigue loads but the stabilities of power and collective pitch angle were effectively controlled for all cases, especially at the highest studied hub velocity of20 m/s, leading to the averaged reduction percentages in the standard deviations of the flapwise root moment, the flapwise tip deflection and the root damage equivalent load, of about 30.0 %, 20.0 % and 20.0 %, respectively. Furthermore, the control effectiveness gradually lessened in the sequences of single, column, row and array cases, with successively increasing effective turbulence intensity,within regions II and III. The performances in region III,associated with the impaired flow separation on the blade by the effective pitching action, were much better than those in region II, related to enhanced flow detachment. In addition,at the rated wind velocity, the control for the array case was superior over other three cases, which was thought to be originated from the more pitch activities to impair the uncontrolled flow separation on the blade surface. 展开更多
关键词 Smart rotor control Offshore wind energy Fatigue load Wake effect Turbine layout strategy
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