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Application of artificial neural networks in optimal tuning of tuned mass dampers implemented in high-rise buildings subjected to wind load 被引量:9
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作者 Meysam Ramezani Akbar Bathaei Amir K.Ghorbani-Tanha 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第4期903-915,共13页
High-rise buildings are usually considered as flexible structures with low inherent damping. Therefore, these kinds of buildings are susceptible to wind-induced vibration. Tuned Mass Damper(TMD) can be used as an ef... High-rise buildings are usually considered as flexible structures with low inherent damping. Therefore, these kinds of buildings are susceptible to wind-induced vibration. Tuned Mass Damper(TMD) can be used as an effective device to mitigate excessive vibrations. In this study, Artificial Neural Networks is used to find optimal mechanical properties of TMD for high-rise buildings subjected to wind load. The patterns obtained from structural analysis of different multi degree of freedom(MDF) systems are used for training neural networks. In order to obtain these patterns, structural models of some systems with 10 to 80 degrees-of-freedoms are built in MATLAB/SIMULINK program. Finally, the optimal properties of TMD are determined based on the objective of maximum displacement response reduction. The Auto-Regressive model is used to simulate the wind load. In this way, the uncertainties related to wind loading can be taken into account in neural network’s outputs. After training the neural network, it becomes possible to set the frequency and TMD mass ratio as inputs and get the optimal TMD frequency and damping ratio as outputs. As a case study, a benchmark 76-story office building is considered and the presented procedure is used to obtain optimal characteristics of the TMD for the building. 展开更多
关键词 artificial neural networks tuned mass damper wind load auto-regressive model optimal frequency anddamping
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Application of Lead Viscoelastic Dampers to Wind Vibration Control on Big-Span Power Transmission Tower 被引量:1
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作者 梁政平 李黎 +1 位作者 尹鹏 段松涛 《Journal of Southwest Jiaotong University(English Edition)》 2008年第4期320-328,共9页
To study the wind vibration response of power transmission tower, the lead viscoelastic dampers (LVDs) were applied to a cup tower. With time history analysis method, the displacement, velocity, acceleration and for... To study the wind vibration response of power transmission tower, the lead viscoelastic dampers (LVDs) were applied to a cup tower. With time history analysis method, the displacement, velocity, acceleration and force response of the tower was calculated and analyzed. The results show that the control effect of lead viscoelastic dampers is very good, and the damping ratio can reach 20% or more when they are applied to the tower head. 展开更多
关键词 Transmission tower Lead viscoelastic damper wind-induced vibration control
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Effects of Tuned Mass Damper on Wind-Induced Vibration of Free Standing Pylon by Wind Tunnel Test
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作者 王中文 朱宏平 马存明 《Journal of Southwest Jiaotong University(English Edition)》 2009年第2期109-112,共4页
In order to assess the effects of tuned mass dampers (TMDs) on wind actions, an aeroelastic model with a scale of 1:60 was constructed. Tests were performed in an atmospheric boundary layer wind tunnel to investiga... In order to assess the effects of tuned mass dampers (TMDs) on wind actions, an aeroelastic model with a scale of 1:60 was constructed. Tests were performed in an atmospheric boundary layer wind tunnel to investigate the buffeting response of the pylon with a TMD fixed by a wire rope instead of a spring. The model was tested under different levels of damping. The experimental and numerical results showed that with the TMD in the optimal condition, the buffeting response was reduced by 47%. 展开更多
关键词 Buffeting response Tuned mass damper wind tunnel test Free standing pylon
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Dynamic performance of cable-stayed bridge tower with multi-stage pendulum mass damper under wind excitations——I:Theory 被引量:4
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作者 郭安薪 徐幼麟 李惠 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2007年第3期295-306,共12页
In this paper, wind-induced vibration control of a single column tower of a cable-stayed bridge with a multi- stage pendulum mass damper (MSPMD) is investigated. Special attention is given to overcoming space limita... In this paper, wind-induced vibration control of a single column tower of a cable-stayed bridge with a multi- stage pendulum mass damper (MSPMD) is investigated. Special attention is given to overcoming space limitations for installing the control device in the tower and the effect of varying natural frequency of the towers during construction. First, the finite element model of the bridge during its construction and the basic equation of motion of the MSPMD are introduced. The equation of motion of the bridge with the MSPMD under along-wind excitation is then established. Finally, a numerical simulation and parametric study are conducted to assess the effectiveness of the control system for reducing the wind-induced vibration of the bridge towers during construction. The numerical simulation results show that the MSPMD is practical and effective for reducing the along-wind response of the single column tower, can be installed in a small area of the tower, and complies with the time-variant characteristics of the bridge during its entire construction stage. 展开更多
关键词 multi-stage pendulum mass damper cable-stayed bridge single column tower wind-induced vibration
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Contribution of tuned liquid column gas dampers to the performance of offshore wind turbines under wind, wave, and seismic excitations 被引量:8
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作者 Khosrow Bargi Reza Dezvareh Seyed Amin Mousavi 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2016年第3期551-561,共11页
The main intention of the present study is to reduce wind, wave, and seismic induced vibrations of jacket- type offshore wind turbines (JOWTs) through a newly developed vibration absorber, called tuned liquid column... The main intention of the present study is to reduce wind, wave, and seismic induced vibrations of jacket- type offshore wind turbines (JOWTs) through a newly developed vibration absorber, called tuned liquid column gas damper (TLCGD). Using a Simulink-based model, an analytical model is developed to simulate global behavior of JOWTs under different dynamic excitations. The study is followed by a parametric study to explore efficiency of the TLCGD in terms of nacelle acceleration reduction under wind, wave, and earthquake loads. Study results indicate that optimum frequency of the TLCGD is rather insensitive to excitation type. In addition, while the gain in vibration control from TLCGDs with higher mass ratios is generally more pronounced, heavy TLCGDs are more sensitive to their tuned frequency such that ill-regulated TLCGD with high mass ratio can lead to destructive results. It is revealed that a well regulated TLCGD has noticeable contribution to the dynamic response of the JOWT under any excitation. 展开更多
关键词 offshore wind turbine wind load wave load seismic load tuned liquid column gas damper
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Multiple Tuned Mass Damper Based Vibration Mitigation of Offshore Wind Turbine Considering Soil–Structure Interaction 被引量:8
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作者 Mosaruf HUSSAN Faria SHARMIN Dookie KIM 《China Ocean Engineering》 SCIE EI CSCD 2017年第4期476-486,共11页
The dynamics of jacket supported offshore wind turbine (OWT) in earthquake environment is one of the progressing focuses in the renewable energy field. Soil-structure interaction (SSI) is a fundamental principle t... The dynamics of jacket supported offshore wind turbine (OWT) in earthquake environment is one of the progressing focuses in the renewable energy field. Soil-structure interaction (SSI) is a fundamental principle to analyze stability and safety of the structure. This study focuses on the performance of the multiple tuned mass damper (MTMD) in minimizing the dynamic responses of the structures objected to seismic loads combined with static wind and wave loads. Response surface methodology (RSM) has been applied to design the MTMD parameters. The analyses have been performed under two different boundary conditions: fixed base (without SSI) and flexible base (with SSI). Two vibration modes of the structure have been suppressed by multi-mode vibration control principle in both cases. The effectiveness of the MTMD in reducing the dynamic response of the structure is presented. The dynamic SSI plays an important role in the seismic behavior of the jacket supported OWT, especially resting on the soft soil deposit. Finally, it shows that excluding the SSI effect could be the reason of overestimating the MTMD performance. 展开更多
关键词 soil-structure interaction multiple tuned mass damper vibration control response surface method jacket supported offshore wind turbine
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Smart Semi-active PID-ACO control strategy for tower vibration reduction in Wind Turbines with MR damper 被引量:2
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作者 Mahmudur Rahman Zhi Chao Ong +1 位作者 Wen Tong Chong Sabariah Julai 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2019年第4期887-902,共16页
Wind turbine technology is well known around the globe as an eco-friendly and eff ective renewable power source. However, this technology often faces reliability problems due to structural vibration. This study propos... Wind turbine technology is well known around the globe as an eco-friendly and eff ective renewable power source. However, this technology often faces reliability problems due to structural vibration. This study proposes a smart semi-active vibration control system using Magnetorheological (MR) dampers where feedback controllers are optimized with nature-inspired algorithms. Proportional integral derivative (PID) and Proportional integral (PI) controllers are designed to achieve the optimal desired force and current input for MR the damper. PID control parameters are optimized using an Ant colony optimization (ACO) algorithm. The eff ectiveness of the ACO algorithm is validated by comparing its performance with Ziegler-Nichols (Z-N) and particle swarm optimization (PSO). The placement of the MR damper on the tower is also investigated to ensure structural balance and optimal desired force from the MR damper. The simulation results show that the proposed semi-active PID-ACO control strategy can signifi cantly reduce vibration on the wind turbine tower under diff erent frequencies (i.e., 67%, 73%, 79% and 34.4% at 2 Hz, 3 Hz, 4.6 Hz and 6 Hz, respectively) and amplitudes (i.e. 50%, 58% and 67% for 50 N, 80 N, and 100 N, respectively). In this study, the simulation model is validated with an experimental study in terms of natural frequency, mode shape and uncontrolled response at the 1st mode. The proposed PID-ACO control strategy and optimal MR damper position is also implemented on a lab-scaled wind turbine tower model. The results show that the vibration reduction rate is 66% and 73% in the experimental and simulation study, respectively, at the 1st mode. 展开更多
关键词 ant COLONY optimization fi nite diff erence method MAGNETORHEOLOGICAL damper PID-ACO controller semiactive control system identifi cation wind turbine TOWER
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横风-曲线超高耦合下高速列车风阻板气动干扰机理
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作者 杜礼明 王凯 王修召 《铁道科学与工程学报》 北大核心 2026年第2期588-600,共13页
随着高速列车运行速度持续提升,风阻制动装置在紧急制动中的作用日益凸显,但其在曲线通过时的气动性能及复杂环境下的干扰机制尚不明确。为探究风阻板对列车在横风与超高耦合作用下的气动干扰问题,以某型动车组为研究对象,分析横风(0~25... 随着高速列车运行速度持续提升,风阻制动装置在紧急制动中的作用日益凸显,但其在曲线通过时的气动性能及复杂环境下的干扰机制尚不明确。为探究风阻板对列车在横风与超高耦合作用下的气动干扰问题,以某型动车组为研究对象,分析横风(0~25 m/s)与曲线超高(40~90 mm)耦合作用下的气动特性。采用Realizable k-ε湍流模型的RANS方法及风洞试验验证确保模型精度和结果的可靠性,重点分析风阻板开启状态下列车气动力变化特征,并评估其对整车运行稳定性与制动性能的影响。研究结果表明:1)横风20 m/s、超高70 mm工况下,列车气动干扰最强,头车横向力达峰值,超高低于或高于70 mm时横向力均有所下降;2)相较于直线工况,曲线通过时升力降低22.59%,横向力提升9.03%。风阻板对整车横向力影响较小,贡献不足1%,但可显著降低升力,占比达16%,其制动性能随着车速提升而增强,在400 km/h时制动减速度达0.47 m/s^(2);3)风阻板降低整车升力但提高横向力。随着超高值的增加,升力变化率从−0.12%增至−0.19%,横向力变化率从0.29%增至0.34%。4)横风10 m/s时,头车与整车阻力分别为无风工况的1.16倍和1.392倍;风速25 m/s时,头车横向力激增至无风工况的214倍。风阻板在横风−超高耦合环境中可有效平衡制动,揭示横向力及升力的贡献边界,为复杂环境下高速列车安全控制及风阻板优化设计提供理论依据。 展开更多
关键词 风阻板 高速列车 曲线超高 横风干扰 气动性能 制动特性
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Wind-induced vibration control of bridges using liquid column damper 被引量:3
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作者 薛素铎 高赞明 徐幼麟 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2002年第2期271-280,共10页
The potential application of tuned liquid column damper (TLCD) for suppressing wind-induced vibration of long span bridges is explored in this paper.By installing the TLCD in the bridge deck,a mathematical model for t... The potential application of tuned liquid column damper (TLCD) for suppressing wind-induced vibration of long span bridges is explored in this paper.By installing the TLCD in the bridge deck,a mathematical model for the bridge-TLCD system is established.The governing equations of the system are developed by considering all three displacement components of the deck in vertical,lateral,and torsional vibrations,in which the interactions between the bridge deck,the TLCD,the aeroelastic forces,and the aerodynamic forces are fully reflected.Both buffeting and flutter analyses are carried out.The buffeting analysis is performed through random vibration approach,and a critical flutter condition is identified from flutter analysis.A numerical example is presented to demonstrate the control effectiveness of the damper and it is shown that the TLCD can be an effective device for suppressing wind-induced vibration of long span bridges,either for reducing the buffeting response or increasing the critical flutter wind velocity of the bridge. 展开更多
关键词 long span bridge bridge deck wind-induced vibration vibration control FLUTTER BUFFETING tuned liquid column damper TLCD-bridge interaction mathematical model
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多液柱调谐阻尼器对浮式风机基础运动的抑制效果
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作者 陈淑玲 韩长志 +2 位作者 李国明 崔福音 YAN Shiqiang 《船舶工程》 北大核心 2026年第1期23-30,共8页
[目的]为研究半潜浮式风机平台俯仰运动对平台的疲劳载荷和气动性能的影响,并探讨多液柱调谐阻尼器(TLMCD)对平台运动的抑制效果,[方法]以OC4 DeepCWind半潜浮式平台为例,开展TLMCD对浮式风机平台运动的抑制作用研究。基于该平台的结构... [目的]为研究半潜浮式风机平台俯仰运动对平台的疲劳载荷和气动性能的影响,并探讨多液柱调谐阻尼器(TLMCD)对平台运动的抑制效果,[方法]以OC4 DeepCWind半潜浮式平台为例,开展TLMCD对浮式风机平台运动的抑制作用研究。基于该平台的结构和系泊特点设计3种不同规格的TLMCD,并利用聚焦波模型模拟真实海况中的波浪载荷,在保持原缆索系泊方式不变的情况下,分析TLMCD的调谐频率及其对平台运动响应的影响。[结果]结果表明:TLMCD对平台纵摇运动有显著的抑制效果,尤其是在平台固有频率、波浪谱峰频率和TLMCD调谐频率三者吻合条件下,调谐效率最佳。[结论]研究成果可为半潜浮式平台的运动控制设计和优化提供一定参考。 展开更多
关键词 多液柱调谐阻尼器(TLMCD) 运动抑制 浮式风机
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考虑频率不确定性超高层建筑风振控制的内置格栅MTLD优化设计方法
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作者 郑乔辉 谢壮宁 +4 位作者 张蓝方 张乐乐 江毅 邬晓 李奇志 《振动工程学报》 北大核心 2026年第3期792-800,共9页
强风过程中超高层建筑的模态频率会呈现时变特征,影响调谐液体阻尼器(TLD)的控制效果。本文提出一种考虑结构频率不确定性的多TLD(MTLD)优化设计方法,该方法以TLD平面尺寸、液深和阻尼格栅稠密比为设计变量,以基于日本标准AIJ-GEH—200... 强风过程中超高层建筑的模态频率会呈现时变特征,影响调谐液体阻尼器(TLD)的控制效果。本文提出一种考虑结构频率不确定性的多TLD(MTLD)优化设计方法,该方法以TLD平面尺寸、液深和阻尼格栅稠密比为设计变量,以基于日本标准AIJ-GEH—2004所建议的频率相关舒适度水准为约束条件,采用等效线性模型计算受控结构的响应,并采用迭代方法考虑格栅阻尼晃幅相关性的影响以提高计算精度,通过以最小总水量为优化目标的粒子群算法获得MTLD方案。将本文方法用于某310 m高的超高层建筑的MTLD优化设计,并与其他2种未经优化的单TLD和MTLD的结果进行对比。结果表明:采用本文方法具有较好的鲁棒性,优化方案在10%的频率漂移区间内能够满足舒适度水准,且总水量较传统TLD减少了9.7%。采用结构-MTLD非线性多模态模型验证了优化方案的有效性。 展开更多
关键词 调谐液体阻尼器 风振舒适度 模态展开法 风振控制
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浅谈阻尼绕组对突加负载工况下同步电动机动态稳定的影响
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作者 邓守春 《电气防爆》 2026年第1期6-8,12,共4页
以一台1350kW-18P同步电机为例进行研究,在突变负载工况下,使用有限元法研究负载转矩波动对同步电动机的影响,将驱动往复式压缩机负载的同步电动机的阻尼绕组电流、转速、角加速度等情况进行分析。同步电动机转速和角加速度的变化情况,... 以一台1350kW-18P同步电机为例进行研究,在突变负载工况下,使用有限元法研究负载转矩波动对同步电动机的影响,将驱动往复式压缩机负载的同步电动机的阻尼绕组电流、转速、角加速度等情况进行分析。同步电动机转速和角加速度的变化情况,间接反映了同步电动机转子的受力情况和电机运行的稳定性。电机转速和角加速度的幅值越大、频率越高,转子上结构件的受力越大,交变应力的次数越多,结构件容易产生疲劳损伤,导致事故的发生。 展开更多
关键词 无刷励磁电动机 往复式压缩机 转矩波动 突变负载 转速
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严寒B区地铁热环境测试与冬季通风优化探讨
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作者 王奕然 唐晓磊 倪龙 《暖通空调》 2026年第1期167-173,共7页
为评估严寒B区地铁车站及隧道的热环境现状,发现存在的问题,提出应对措施,对哈尔滨地铁1号线典型车站及区间隧道进行了夏季与冬季热环境测试。结果表明:测试车站及隧道的热环境基本满足国家标准关于夏季降温、冬季防寒及CO_(2)浓度控制... 为评估严寒B区地铁车站及隧道的热环境现状,发现存在的问题,提出应对措施,对哈尔滨地铁1号线典型车站及区间隧道进行了夏季与冬季热环境测试。结果表明:测试车站及隧道的热环境基本满足国家标准关于夏季降温、冬季防寒及CO_(2)浓度控制的要求;远期随着客流量和行车对数的增加,车站及区间隧道的冬季温度及CO_(2)浓度存在超标风险。为避免出入口无序引入新风对冬季车站公共区温度冲击过大,建议从活塞风道引入适量新风应对远期冬季热环境问题。针对目前地铁活塞风道组合风阀密闭与调节性能差的问题,建议采用可以按需调节冬季通风量的防寒组合风阀,达到防寒和换气的目的。 展开更多
关键词 地铁 热环境 严寒B区 冬季通风 活塞风 防寒 组合风阀
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大跨度高速铁路混合组合梁斜拉桥设计研究
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作者 方绪镯 《铁道工程学报》 北大核心 2026年第2期42-47,53,共7页
研究目的:深江铁路跨鸡鸦水道主桥根据通航防洪要求,主跨408 m跨越鸡鸦水道,其搭载双线时速250 km高速铁路。综合考虑建设条件及跨度,斜拉桥是最为合理桥型。本文针对主跨408 m高速铁路斜拉桥展开系统研究,寻找结构受力、施工组织、行... 研究目的:深江铁路跨鸡鸦水道主桥根据通航防洪要求,主跨408 m跨越鸡鸦水道,其搭载双线时速250 km高速铁路。综合考虑建设条件及跨度,斜拉桥是最为合理桥型。本文针对主跨408 m高速铁路斜拉桥展开系统研究,寻找结构受力、施工组织、行车舒适性及工程经济性之间最佳平衡点,旨在为同类型大跨度高铁桥梁的设计实践提供借鉴。研究结论:(1)斜拉桥采用混凝土梁边跨、钢混组合梁主跨的双边箱混合组合梁结构,利用边跨混凝土梁自重压重效应增强主跨锚固刚度,同时消除边墩、辅助墩支座负反力,混凝土梁边跨与主塔可同步施工,中跨组合梁采用悬拼施工,缩短工期的同时,大幅降低用钢量;(2)斜拉桥约束体系采用“可剪断固定支座+黏滞阻尼器”体系,提升了运营阶段轨道结构稳定性,并保证了结构的抗震性能;(3)静动力分析表明,结构在ZK活载下挠度、梁端转角及横向位移均满足规范要求,抗风抗震性能优异,车桥耦合振动验证了250 km/h设计速度下的行车安全与舒适性;(4)本文所述混合组合梁斜拉桥设计可为相近跨度铁路桥提供可借鉴的设计模式。 展开更多
关键词 高速铁路斜拉桥 双边箱构造 混合组合梁 可剪断固定支座 黏滞阻尼器 抗风抗震 车桥耦合振动
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基于非线性宽频吸振的风机塔筒振动抑制研究
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作者 章力 刘诗璨 耿晓锋 《模具制造》 2026年第1期135-137,共3页
随着风机单机容量提升,塔筒振动问题日益突出。调谐质量阻尼器(TMD)在单频激励下效果良好,但在多频激励中性能受限。提出了一种宽频减振策略,以2 MW陆上风机塔筒为对象,基于哈密尔顿原理建立塔筒-TMD/NES耦合动力学模型,对比分析了其减... 随着风机单机容量提升,塔筒振动问题日益突出。调谐质量阻尼器(TMD)在单频激励下效果良好,但在多频激励中性能受限。提出了一种宽频减振策略,以2 MW陆上风机塔筒为对象,基于哈密尔顿原理建立塔筒-TMD/NES耦合动力学模型,对比分析了其减振效果。结果表明,TMD适用于单频振动控制,而NES在多频激励下具有更优的宽频适应性与减振性能。拓展了NES的工程应用理论基础。 展开更多
关键词 风机塔筒 被动减振 调谐质量阻尼器 非线性能量阱
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钢绞线斜拉索低阶风致振动控制研究
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作者 盛能军 杨林 赵海威 《世界桥梁》 北大核心 2026年第2期76-82,共7页
针对钢绞线斜拉索在特殊环境下出现的低阶大幅风致振动问题,以望东长江公路大桥为背景进行钢绞线斜拉索低阶风致振动控制研究。提出钢绞线斜拉索低阶覆冰驰振和风雨振的阻尼控制指标,设计一种面内、面外振动控制的新型杠杆质量阻尼器,... 针对钢绞线斜拉索在特殊环境下出现的低阶大幅风致振动问题,以望东长江公路大桥为背景进行钢绞线斜拉索低阶风致振动控制研究。提出钢绞线斜拉索低阶覆冰驰振和风雨振的阻尼控制指标,设计一种面内、面外振动控制的新型杠杆质量阻尼器,采用复模态理论对斜拉索用阻尼器进行阻尼参数优化分析,通过实桥测试对20根斜拉索的固有阻尼比进行统计分析,对23根斜拉索进行面内、面外减振效果分析。结果表明:实测钢绞线斜拉索的第1~7阶模态固有对数衰减率统计值达到1.0%以上;阻尼器安装后斜拉索前5阶面内、面外模态最小对数衰减率分别为5.2%和3.9%,满足钢绞线斜拉索低阶风致振动的阻尼控制指标要求。大桥J26号中长索在安装阻尼器后,斜拉索10 min振动加速度均方根值0.014g,减振率92.3%,满足规范规定的一级超限阈值要求。 展开更多
关键词 斜拉桥 钢绞线斜拉索 新型杠杆质量阻尼器 覆冰驰振 风雨振 对数衰减率 实桥测试
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基于多向多点位TMD的半潜式风机振动控制研究 被引量:1
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作者 孙亮明 林道璇 《振动与冲击》 北大核心 2025年第12期122-129,共8页
为了对半潜式风机水平向和竖向的振动进行控制,提出了多向多点位调谐质量阻尼器(tuned mass damper,TMD)的布设方式,即在机舱内布置H-TMD,平台内布置V-TMD。为研究这种TMD布设方式的减振效果,建立了半潜式风机-多向多点位TMD全耦合数值... 为了对半潜式风机水平向和竖向的振动进行控制,提出了多向多点位调谐质量阻尼器(tuned mass damper,TMD)的布设方式,即在机舱内布置H-TMD,平台内布置V-TMD。为研究这种TMD布设方式的减振效果,建立了半潜式风机-多向多点位TMD全耦合数值模型,利用OpenFAST仿真分析风浪联合作用下半潜式风机的动力响应。结果表明:布置多向多点位TMD的减振效果要比单点位TMD的减振效果要好,且在机舱内布置低频H-TMD,平台内布置V-TMD为最优布置方案,能够使半潜式风机纵摇、横摇、垂荡、塔架纵向振动的平均标准差控制率分别达到13.97%、32.85%、15.21%、2.86%。 展开更多
关键词 振动控制 半潜式风机 调谐质量阻尼器(TMD) 动力分析
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基于颗粒阻尼理论的海上风机减振甲板特性研究 被引量:1
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作者 董霄峰 任绅铖 《海洋工程》 北大核心 2025年第1期74-87,共14页
当前,海上风电正朝“大容量、高塔筒、长叶片”的方向发展,在复杂海洋环境影响下,更加柔性的海上风机容易引发结构超限振动或疲劳振动问题,对海上风电场的安全运行带来严峻挑战。引入颗粒阻尼理论解决海上风机的振动控制问题。首先,充... 当前,海上风电正朝“大容量、高塔筒、长叶片”的方向发展,在复杂海洋环境影响下,更加柔性的海上风机容易引发结构超限振动或疲劳振动问题,对海上风电场的安全运行带来严峻挑战。引入颗粒阻尼理论解决海上风机的振动控制问题。首先,充分考虑风机内部空间布局与限制要求,提出了一种新型的减振颗粒甲板(VR-PD)结构形式;其次,建立了有限元与离散元(FEM-DEM)耦合的海上风机单自由度模型,并分别从颗粒的阻塞性和非阻塞性、颗粒半径和数量、腔体尺寸和颗粒叠加层数、腔体边壁倒角、颗粒质量比、结构自振周期等六方面进行VR-PD的减振特性研究;最后,建立了等质量的调谐质量阻尼器(TMD)模型,考虑急停工况、停机工况和地震工况对两者减振效果进行对比。结果显示:VR-PD最多可提升阻尼比70.6%、多降低12.9%的振动位移和9.5%的振动加速度,VR-PD不仅减振效果优于TMD,而且可以更好地适应海上风机的内部空间,具有很好的工程实用性。 展开更多
关键词 海上风电 振动控制 颗粒阻尼器 调谐质量阻尼器 FEM-DEM耦合建模
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风机塔架调谐液体阻尼器多向致振控制方法研究
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作者 刘纲 王晖 +2 位作者 冀卫东 雷振博 蒋伟 《工程力学》 北大核心 2025年第7期165-172,共8页
随着大兆瓦风机的普及应用,高柔风机塔架已成为发展趋势。但长周期、低阻尼的动力特性使其在风荷载激励下易产生频繁的振动,不仅损耗发电效率,且会降低机组的疲劳寿命。除此之外,机组的偏航、变桨系统使其具有多向振动特征。基于此,该... 随着大兆瓦风机的普及应用,高柔风机塔架已成为发展趋势。但长周期、低阻尼的动力特性使其在风荷载激励下易产生频繁的振动,不仅损耗发电效率,且会降低机组的疲劳寿命。除此之外,机组的偏航、变桨系统使其具有多向振动特征。基于此,该文提出利用多层方形调谐液体阻尼器(TLD)来控制风机塔架风致振动。基于结构动力学及流体力学原理,运用拉格朗日方程和三维势函数证明了TLD在其正交方向晃荡的独立性;通过势函数理论建立了可考虑偏航、变桨因素影响的多层TLD-风机系统的耦合模型;利用该模型对多层方形TLD在偏航、变桨系统影响下风机塔架的减振效果进行了分析。结果表明,多层方形TLD对偏航、变桨系统带来结构多向振动特征不敏感,不同方向角的TLD均具备较稳定的控制性能。但当风机主轴与TLD主轴不重合时,会显著增加TLD内液体晃动的波高。 展开更多
关键词 风机塔架 调谐液体阻尼器 拉格朗日方程 风致振动控制 多向振动
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1000 kV八分裂输电线路负刚度阻尼器防舞的风洞试验研究
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作者 楼文娟 吴蕙蕙 +1 位作者 黄赐荣 王强 《振动与冲击》 北大核心 2025年第4期21-27,81,共8页
利用磁体相互作用力设计了一种负刚度装置,并与电涡流阻尼器并联制得负刚度阻尼器(negative stiffness damper,NSD)。在导线大比例缩尺模型近端部安装阻尼器进行自振试验,发现阻尼器可以提升系统一阶等效阻尼比,其中NSD的减振性能更佳... 利用磁体相互作用力设计了一种负刚度装置,并与电涡流阻尼器并联制得负刚度阻尼器(negative stiffness damper,NSD)。在导线大比例缩尺模型近端部安装阻尼器进行自振试验,发现阻尼器可以提升系统一阶等效阻尼比,其中NSD的减振性能更佳。以某1000 kV八分裂输电线路为工程原型,基于模态分解法与动力相似关系,设计了导线-阻尼器系统的舞动风洞试验装置,在典型易舞风攻角下,进行了安装不同阻尼器的节段模型风洞试验。结果表明:端部阻尼器对导线的竖向舞动具有较好的抑制效果,能够有效提高导线起舞风速、降低导线竖向舞动幅值,且NSD的抑舞性能优于黏滞阻尼器;但在以扭转向舞动为主的工况下,安装在分裂导线近中心的单阻尼器防舞效果不佳,针对这种情况给出了双阻尼器并联连接导线的方案,试验验证了这种方案可以有效抑制扭转向舞动。 展开更多
关键词 输电线路 负刚度阻尼器(NSD) 风洞试验 防舞
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