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Random vortex induced vibration response of suspended flexible cable to fluctuating wind
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作者 Genjin MU Weiqiu ZHU Maolin DENG 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2023年第12期2207-2226,共20页
A popular dynamical model for the vortex induced vibration(VIV)of a suspended flexible cable consists of two coupled equations.The first equation is a partial differential equation governing the cable vibration.The se... A popular dynamical model for the vortex induced vibration(VIV)of a suspended flexible cable consists of two coupled equations.The first equation is a partial differential equation governing the cable vibration.The second equation is a wake oscillator that models the lift coefficient acting on the cable.The incoming wind acting on the cable is usually assumed as the uniform wind with a constant velocity,which makes the VIV model be a deterministic one.In the real world,however,the wind velocity is randomly fluctuant and makes the VIV of a suspended flexible cable be treated as a random vibration.In the present paper,the deterministic VIV model of a suspended flexible cable is modified to a random one by introducing the fluctuating wind.Using the normal mode approach,the random VIV system is transformed into an infinite-dimensional modal vibration system.Depending on whether a modal frequency is close to the aeolian frequency or not,the corresponding modal vibration is characterized as a resonant vibration or a non-resonant vibration.By applying the stochastic averaging method of quasi Hamiltonian systems,the response of modal vibrations in the case of resonance or non-resonance can be analytically predicted.Then,the random VIV response of the whole cable can be approximately calculated by superimposing the response of the most influential modal vibrations.Some numerical simulation results confirm the obtained analytical results.It is found that the intensity of the resonant modal vibration is much higher than that of the non-resonant modal vibration.Thus,the analytical results of the resonant modal vibration can be used as a rough estimation for the whole response of a cable. 展开更多
关键词 vortex induced vibration(VIV) wake oscillator random response suspended flexible cable fluctuating wind
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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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Case Study of Wind-Induced Vibration of a Cooling Tower Under Typhoon Environment
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作者 XING Yuan ZHAO Lin +1 位作者 CHEN Xu GE Yaojun 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第1期108-119,共12页
As high-rise cooling towers are constantly emerging,wind effects on this kind of wind-sensitive structures have attracted more and more attention,especially in typhoon prone areas.Terrain Type B turbulent flow fields ... As high-rise cooling towers are constantly emerging,wind effects on this kind of wind-sensitive structures have attracted more and more attention,especially in typhoon prone areas.Terrain Type B turbulent flow fields under the normal wind and typhoon are simulated by active wind tunnel technology,and rigid-pressure-measurement model and aero-elastic-vibration-measurement model of a large cooling tower are built.The stagnation point,peak suction point,separation point and leeward point of the throat position shell are selected to analyze pressure coefficient,probability distribution,peak factor,power spectral density and dynamic amplification factor under normal wind and typhoon.It is clarified that there exists a significant non-Gaussian characteristic under typhoon condition,which also exists in structural response level.Resonance response ratio of the total response is higher during typhoon condition.The maximum value of dynamic amplification coefficient under typhoon field is up to 1.18 times over that under normal wind.The findings of this study are expected to be of interest and practical use to professional and researchers involved in the wind-resistant designs of super-large cooling towers in typhoon prone regions. 展开更多
关键词 cooling towers active wind tunnel non-Gaussian characteristic wind-induced vibration dynamic amplification coefficient
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Rain-Wind Induced Vibration Mitigation of Stay Cables by Aerodynamic Means
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作者 赵军 李明水 廖海黎 《Journal of Southwest Jiaotong University(English Edition)》 2009年第1期54-57,共4页
Stay cables with various surface profiles were tested in wind tunnel. Dimples and helical fillets were applied to mitigate the rain- wind induced vibration. The rain-wind excited responses of the cable with smooth sur... Stay cables with various surface profiles were tested in wind tunnel. Dimples and helical fillets were applied to mitigate the rain- wind induced vibration. The rain-wind excited responses of the cable with smooth surface were larger than those of the cables with dimples and helical fillets. At high Reynolds number, the drag coefficients of cables with dimples and helical fillets are much larger than those of smooth surface cable. 展开更多
关键词 Rain-wind induced vibration wind tunnel test Stay cable MITIGATION
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Influence of aerodynamic configuration of a streamline box girder on bridge flutter and vortex-induced vibration 被引量:9
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作者 Qi WANG Haili LIAO Mingshui LI Cunming MA 《Journal of Modern Transportation》 2011年第4期261-267,共7页
Streamline box girders are widely applied in the design and construction of long-span bridges all over the world. In order to study the influence of modifications of aerodynamic configuration and accessory components ... Streamline box girders are widely applied in the design and construction of long-span bridges all over the world. In order to study the influence of modifications of aerodynamic configuration and accessory components on flutter and vortex-induced vibration (VIV), more than 60 cases were tested through a 1:50 scale section model. The test results indicates that the aerodynamic configuration and accessory components of streamline box girders can signifi- cantly affect the wind-induced vibration of bridge, which is in good agreement with the experience of past researchers. From the tests carried out, it is observed that if the horizontal angle of the inclined web of the streamline box girder is below 16°, the critical flutter wind speed of bridge will increase remarkably, and the VIV will diminish. The test results also show that the 15° inclined web can restrain the formation of vortex near the tail, and consequently improve the performance of aerodynamic stability of long-span bridges. Finally, a new streamline box girder with 15° inclined web was presented and strongly recommended in the aerodynamic configuration design of long-span bridges. 展开更多
关键词 streamline box girder aerodynamic configuration wind tunnel test FLUTTER vortex-induced vibration
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Hydrodynamics of A Flexible Riser Undergoing the Vortex-Induced Vibration at High Reynolds Number 被引量:1
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作者 REN Tie ZHANG Meng-meng +1 位作者 FU Shi-xiao SONG Lei-jian 《China Ocean Engineering》 SCIE EI CSCD 2018年第5期570-581,共12页
This study proposed a method to obtain hydrodynamic forces and coefficients for a flexible riser undergoing the vortex-induced vibration(VIV), based on the measured strains collected from the scale-model testing with ... This study proposed a method to obtain hydrodynamic forces and coefficients for a flexible riser undergoing the vortex-induced vibration(VIV), based on the measured strains collected from the scale-model testing with the Reynolds numbers ranging from 1.34 E5 to 2.35 E5. The riser is approximated as a tensioned spatial beam, and an inverse method based on the FEM of spatial beam is adopted for the calculation of hydrodynamic forces in the cross flow(CF) and inline(IL) directions. The drag coefficients and vortex-induced force coefficients are obtained through the Fourier Series Theory. Finally, the hydrodynamic characteristics of a flexible riser model undergoing the VIV in a uniform flow are carefully investigated. The results indicate that the VIV amplifies the drag coefficient, and the drag coefficient does not change with time when the CF VIV is stable. Only when the VIVs in the CF and IL directions are all steady vibrations, the vortex-induced force coefficients keep as a constant with time, and under"lock-in" condition, whether the added-mass coefficient changes with time or not, the oscillation frequency of the VIV keeps unchanged. It further shows that the CF excitation coefficients at high frequency are much smaller than those at the dominant frequency, while, the IL excitation coefficients are in the same range. The axial distributions of the excitation and damping region at the dominant frequency and high frequency are approximately consistent in the CF direction, while, in the IL direction, there exists a great difference. 展开更多
关键词 flexible riser vortex-induced vibration vortex-induced force excitation coefficient added-mass coefficient drag coefficient
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Wind-induced responses of super-large cooling towers 被引量:3
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作者 柯世堂 葛耀君 +2 位作者 赵林 陈少林 Y.Tamura 《Journal of Central South University》 SCIE EI CAS 2013年第11期3216-3228,共13页
Traditional gust load factor(GLF)method,inertial wind load(IWL)method and tri-component method(LRC+IWL)cannot accurately analyze the wind-induced responses of super-large cooling towers,so the real combination formula... Traditional gust load factor(GLF)method,inertial wind load(IWL)method and tri-component method(LRC+IWL)cannot accurately analyze the wind-induced responses of super-large cooling towers,so the real combination formulas of fluctuating wind-induced responses and equivalent static wind loads(ESWLSs)were derived based on structural dynamics and random vibration theory.The consistent coupled method(CCM)was presented to compensate the coupled term between background and resonant response.Taking the super-large cooling tower(H=215 m)of nuclear power plant in Jiangxi Province,China,which is the highest and largest in China,as the example,based on modified equivalent beam-net design method,the aero-elastic model for simultaneous pressure and vibration measurement of super-large cooling tower is firstly carried out.Then,combining wind tunnel test and CCM,the effects of self-excited force on the surface pressures and wind-induced responses are discussed,and the wind-induced response characteristics of background component,resonant component,coupled term between background and resonant response,fluctuating responses,and wind vibration coefficients are discussed.It can be concluded that wind-induced response mechanism must be understood to direct the wind resistant design for super-large cooling towers. 展开更多
关键词 super-large cooling towers wind-induced responses wind vibration coefficients aero-elastic model consistent coupled method
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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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基于CFD与风洞试验的边主梁涡振气动措施 被引量:1
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作者 黄林 董佳慧 +2 位作者 廖海黎 蒲诗雨 王骑 《西南交通大学学报》 EI CSCD 北大核心 2024年第2期343-352,共10页
为能够快捷且经济地完成开口类钝体桥梁断面涡振制振气动措施的选型,以一座边主梁叠合梁斜拉桥为背景,采用“CFD(computation fluid dynamics)数值模拟选型+风洞试验验证”的思路对其涡振制振气动措施选型进行研究.该桥原设计主梁断面... 为能够快捷且经济地完成开口类钝体桥梁断面涡振制振气动措施的选型,以一座边主梁叠合梁斜拉桥为背景,采用“CFD(computation fluid dynamics)数值模拟选型+风洞试验验证”的思路对其涡振制振气动措施选型进行研究.该桥原设计主梁断面在常遇风速下存在显著涡激振动,为完成气动措施的初步选型,采用CFD数值计算对原设计断面的流场进行模拟,通过研究原设计断面的旋涡脱落状态确定主要旋涡抑制对象,进而有针对性地模拟了3种气动措施(下中央稳定板、导流板与风嘴)对主要脱落旋涡的抑制作用,通过将各断面旋涡脱落状态与三分力系数进行对比分析,得到各断面涡振性能的相对优劣关系,并最终选取风嘴与下中央稳定板结合而成的组合气动措施进行风洞验证试验.试验结果表明:该组合气动措施能够有效抑制梁体在各风攻角下的涡激振动,且在+5°风攻角下,通过风洞试验得到的导流板、下中央稳定板、风嘴组合气动3种措施对原设计断面涡振振幅的减小作用依此递增,分别为2.7%、27.7%与87.4%,制振能力高低关系与数值模拟结果相一致;本次数值模拟结果符合预期要求,未来可针对不同类型桥梁断面进一步扩展数值模拟与风洞试验结果对比的数据集,以期更为准确、快捷地完成气动措施的选型. 展开更多
关键词 边主梁叠合梁 涡激振动 气动措施 CFD数值模拟 风洞试验
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耐张型悬索支撑输电结构风振非线性有限元分析 被引量:1
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作者 李正良 王邦杰 王涛 《振动与冲击》 EI CSCD 北大核心 2024年第2期71-78,290,共9页
耐张型悬索支撑输电结构是一类适用于山地地形的新型输电结构,其主要受风荷载控制。为此,该研究发展了该输电结构风振非线性有限元分析模型并开展了结构风振响应分析。考虑结构的几何非线性,通过单元应变能与位移的关系推导了支撑悬索... 耐张型悬索支撑输电结构是一类适用于山地地形的新型输电结构,其主要受风荷载控制。为此,该研究发展了该输电结构风振非线性有限元分析模型并开展了结构风振响应分析。考虑结构的几何非线性,通过单元应变能与位移的关系推导了支撑悬索和输电线的三维杆单元切线刚度矩阵;给出了支撑悬索和输电线的单元质量矩阵、阻尼矩阵以及由风荷载等效而得的单元节点荷载向量;基于非线性有限元理论,建立了耐张型悬索支撑输电结构风振非线性动力方程,并采用了结合Newton-Raphson迭代法的Newmark-β法求解非线性动力方程;通过所建立的动力学分析模型对两跨耐张型悬索支撑输电结构进行了风致非线性振动分析。算例分析结果表明:①提出的模型具有较好的计算精度和较高的计算效率;②悬索支撑导线部分的低阶固有频率比悬索支撑地线部分的低阶固有频率更低;③该输电结构的输电线位移响应受风荷载影响较大;④输电线侧向位移和支撑悬索张力受风速和风向角影响均较显著。 展开更多
关键词 输电结构 悬索支撑 风致振动 非线性有限元
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胶囊形气膜结构风致气弹响应及风振系数研究
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作者 陈昭庆 宋鹏飞 +3 位作者 闫科晔 武岳 苏宁 曾聪 《振动工程学报》 EI CSCD 北大核心 2024年第1期31-39,共9页
针对1/3矢跨比胶囊形气膜结构进行了气弹模型风洞试验,研究了结构的风致气弹响应变化规律,并给出了可供设计参考的风振系数。研究发现:结构平均变形呈迎风面凹陷,顶部隆起,横风向向外凸出的趋势,且这种变形趋势随着内压减小和风速增大... 针对1/3矢跨比胶囊形气膜结构进行了气弹模型风洞试验,研究了结构的风致气弹响应变化规律,并给出了可供设计参考的风振系数。研究发现:结构平均变形呈迎风面凹陷,顶部隆起,横风向向外凸出的趋势,且这种变形趋势随着内压减小和风速增大越来越明显。0°风向角时的平均变形和振幅大于45°风向角时的平均变形和振幅大于90°风向角时的平均变形和振幅,结构合位移均值的极值出现在迎风面与顶面中心点;0°和45°风向角下,顶点竖向振幅>顺风向振幅>横风向振幅,结构以1阶模态振动为主;90°风向角下,顶点横风向振幅大于其他两个方向,结构以1阶和2阶模态叠加振动为主。各工况下结构的内压均有不同程度的减小。最后给出了考虑流固耦合效应的响应风振系数。 展开更多
关键词 风致气弹响应 胶囊形气膜 气弹模型 风洞试验 响应风振系数
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基于气弹模型风洞试验的高耸桅杆风振响应特性
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作者 刘慕广 杜睿 谢壮宁 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第4期861-869,共9页
为了探究高耸桅杆结构风振响应特性,采用刚性节段加连接棒法制作了356 m高桅杆的气弹模型,通过风洞试验研究了桅杆结构的位移响应高度分布特征和模态参与特性,并分析了风速和风向的影响.结果表明,桅杆结构的位移响应随高度呈非线性变化... 为了探究高耸桅杆结构风振响应特性,采用刚性节段加连接棒法制作了356 m高桅杆的气弹模型,通过风洞试验研究了桅杆结构的位移响应高度分布特征和模态参与特性,并分析了风速和风向的影响.结果表明,桅杆结构的位移响应随高度呈非线性变化,其最大平均和脉动响应均出现在顶部2层纤绳锚固点间的中间部位.桅杆结构的横风向响应基本与顺风向相当.风向改变对平均位移有一定影响,对脉动无明显影响.结构顺、横风向风振响应中前三阶模态振动能量具有相近量级,且风速变化会对桅杆结构的模态频率产生一定影响.结构气动阻尼均为正值,且随风速增加而增大.桅杆结构的顺风向风振系数除底部外,其他高度均要显著低于规范值.风速和风向的改变对桅杆中、上部的风振系数影响较小,仅在底部影响较为明显. 展开更多
关键词 桅杆 气弹模型 风洞试验 风振响应 风振系数
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矩形平面投影气膜结构风振响应特性及风振系数研究
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作者 陈昭庆 魏超 +3 位作者 王爽 赵军宾 武岳 苏宁 《振动工程学报》 EI CSCD 北大核心 2024年第7期1115-1125,共11页
近年来,矩形平面投影气膜结构被广泛应用于大跨度气膜煤仓等设施中,但是规范中尚无该类结构的风振系数。本文通过风洞测压试验,测量了典型矢跨比矩形平面投影气膜结构的风荷载;运用非线性动力时程分析法分析了结构的风振响应。研究了风... 近年来,矩形平面投影气膜结构被广泛应用于大跨度气膜煤仓等设施中,但是规范中尚无该类结构的风振系数。本文通过风洞测压试验,测量了典型矢跨比矩形平面投影气膜结构的风荷载;运用非线性动力时程分析法分析了结构的风振响应。研究了风速、风向、跨度、矢跨比和内压等参数对结构变形和响应极值的影响。结果表明:结构呈现迎风面及背风面凹陷、顶部和两侧向外凸的平均变形特征;极值响应的分布受结构参数和风向角的影响;响应的大小与跨度和矢跨比呈正相关;增大内压在一定程度上可以提高结构的抗风性,内压调控区间建议为400~500Pa;给出了可供抗风设计参考的位移风振系数及应力风振系数。 展开更多
关键词 充气膜结构 风洞试验 风振响应 风振系数
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边箱式π型断面涡振性能及导流板措施参数研究
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作者 王峰 邢丰 +4 位作者 熊川 王佳盈 郑晓东 张久鹏 黄晓明 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第5期114-122,共9页
π型断面因构造简单与受力性能好,被广泛应用于桥梁建设中,但其抗风性能差,易产生涡激振动问题.本文以边箱式π型断面桥梁为研究对象,采用宽高比10∶1的π型断面刚体节段模型进行同步测振测压试验,并且通过计算流体力学方法加以对比验证... π型断面因构造简单与受力性能好,被广泛应用于桥梁建设中,但其抗风性能差,易产生涡激振动问题.本文以边箱式π型断面桥梁为研究对象,采用宽高比10∶1的π型断面刚体节段模型进行同步测振测压试验,并且通过计算流体力学方法加以对比验证,研究π型断面涡振性能与导流板抑振机理.试验结果表明:边箱式π型断面在0°、±3°风攻角下发生显著涡激振动,通过在断面两侧加设特定形式及尺寸参数的导流板措施可抑制断面竖弯及扭转涡振.其中,倒L型导流板措施气动优化效果显著,可有效消除涡振振幅,而水平导流板措施的抑振效果有限,相较于竖弯涡振,扭转涡振对于水平导流板尺寸参数更为敏感.通过对比数值模拟结果与表面气动压力分布,表明倒L型导流板措施能够优化断面气动外形,削弱断面上下表面旋涡脱落尺度和能量,同时降低断面所受的周期性气动力,从而有效抑制断面涡振. 展开更多
关键词 π型断面 涡激振动 风洞试验 导流板 风压
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槽形钢箱梁涡振性能及抑振措施试验研究
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作者 封周权 戴金元 +1 位作者 陈诗璇 华旭刚 《世界桥梁》 北大核心 2024年第3期83-89,共7页
为提高槽形钢箱梁桥的抗风性能,对槽形钢箱梁的涡振性能及抑振措施进行试验研究。以某人行景观桥槽形钢箱梁为背景,通过主梁节段模型风洞试验,研究+3°、0°、-3°风攻角下均匀流与紊流风场中槽形钢箱梁的涡振性能,分析交... 为提高槽形钢箱梁桥的抗风性能,对槽形钢箱梁的涡振性能及抑振措施进行试验研究。以某人行景观桥槽形钢箱梁为背景,通过主梁节段模型风洞试验,研究+3°、0°、-3°风攻角下均匀流与紊流风场中槽形钢箱梁的涡振性能,分析交替封闭栏杆、将栏杆楔形扶手改为圆形扶手、提高阻尼比等措施的抑振效果。结果表明:原槽形钢箱梁断面涡振性能不满足规范要求,均匀流风场中,3个风攻角下均出现了超限的竖弯涡振,+3°和-3°风攻角下出现了不同程度的扭转涡振,最不利风攻角为-3°;紊流风场中,最不利风攻角下原断面竖弯涡振振幅降低了23%,未见明显扭转涡振;楔形扶手栏杆交替封闭使结构竖弯涡振振幅增大,主梁涡振性能降低;单独改变栏杆扶手形状为圆形对主梁涡振性能影响不大,在此基础上交替封闭栏杆能够有效抑制主梁涡振;提高结构阻尼比能有效抑制主梁涡振,阻尼比为7‰时,主梁竖弯涡振振幅可降至规范限值的一半左右。 展开更多
关键词 人行桥 槽形钢箱梁 风致振动 涡振性能 抑振措施 扶手形状 阻尼比 风洞试验
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水滴形大跨钢屋盖结构风洞试验和风振分析
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作者 郑江 王凯 王先铁 《建筑结构》 北大核心 2024年第18期103-111,共9页
自然风经过大跨结构时,由于结构屋顶形状不规则,通常会引起柔性屋面的振动,因此针对大跨屋面结构抗风设计需要考虑风压分布和风振响应。以陕西省水务集团矿泉水生产车间为工程背景,制作了1∶200的刚性模型,通过刚性模型风洞试验测得该... 自然风经过大跨结构时,由于结构屋顶形状不规则,通常会引起柔性屋面的振动,因此针对大跨屋面结构抗风设计需要考虑风压分布和风振响应。以陕西省水务集团矿泉水生产车间为工程背景,制作了1∶200的刚性模型,通过刚性模型风洞试验测得该水滴型大跨钢屋盖结构的表面风压,研究了屋盖表面典型测点及整体的风压分布规律。基于风洞试验数据,对结构进行风振时程分析,得到了屋盖表面的风振响应和风振系数。结合刚性模型风洞试验和风振分析,深入研究了水滴形大跨屋盖结构的风压分布规律和风致振动特性,并总结了其共性规律。 展开更多
关键词 水滴形大跨钢屋盖结构 刚性模型 风洞试验 时程分析 风压分布 风振系数
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安装肋条斜拉索的涡激振动和气动力特性研究
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作者 刘庆宽 韩鹏 +3 位作者 孙一飞 褚泽楷 王滨璇 李凯文 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第7期95-110,共16页
以安装肋条斜拉索为研究对象,通过风洞试验系统研究肋条的安装方式(通长安装和间断交错安装)、尺寸和数量对斜拉索涡激振动和气动力的影响,并分析涡激振动的抑制机理.结果表明:和标准斜拉索相比,安装肋条斜拉索能有效抑制涡激振动,且间... 以安装肋条斜拉索为研究对象,通过风洞试验系统研究肋条的安装方式(通长安装和间断交错安装)、尺寸和数量对斜拉索涡激振动和气动力的影响,并分析涡激振动的抑制机理.结果表明:和标准斜拉索相比,安装肋条斜拉索能有效抑制涡激振动,且间断交错安装方式的抑振效果优于通长安装方式,肋条数量为8根的控制效果优于6根和12根;增加肋条宽度和厚度都会减小涡激振动振幅;肋条斜拉索的脉动升力系数显著小于标准斜拉索,且功率谱尖峰幅值降低或不存在显著尖峰,表明间断交错肋条可以降低卡门涡脱落强度甚至完全抑制;对于气动力,在试验雷诺数范围内,安装肋条后平均气动力系数无明显雷诺数效应;相比于标准斜拉索,肋条为通长安装时均会增加斜拉索的平均阻力系数,而采用间断交错安装时,不同肋条数量、尺寸和风攻角对斜拉索的增阻减阻情况不同.当采用8根尺寸为20 mm×15mm的肋条间断交错安装时,在所有风攻角下都有良好的抑振效果,最大涡振振幅减小率可达到96.79%,且平均阻力系数均稳定在1.13附近,平均升力系数均稳定在0附近. 展开更多
关键词 斜拉索 肋条 风洞试验 涡激振动 气动力特性
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双层索系柔性光伏支架结构受力性能研究
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作者 袁焕鑫 宋薏铭 +2 位作者 杜新喜 王若林 马文勇 《沈阳建筑大学学报(自然科学版)》 CAS 北大核心 2024年第3期395-403,共9页
目的研究双层索系柔性光伏支架结构在风荷载作用下的静力性能与动力响应。方法采用ABAQUS有限元软件开展双层索系柔性光伏支架结构的静力性能、动力特性、动力响应和风振系数分析,探究了跨度、横向连接系间距以及挠度限值等影响因素对... 目的研究双层索系柔性光伏支架结构在风荷载作用下的静力性能与动力响应。方法采用ABAQUS有限元软件开展双层索系柔性光伏支架结构的静力性能、动力特性、动力响应和风振系数分析,探究了跨度、横向连接系间距以及挠度限值等影响因素对支架结构受力性能的影响。结果结构的风振响应随着跨度的增加而增大;结构跨中挠度及上层索索力随横向连接系间距的增大而增大;增大上层索预应力可以减小结构的动力响应,而下层索预应力过大会导致结构的风振响应增大。结论通过研究给出了双层索系柔性光伏支架结构的风振系数取值范围以及上、下层索的初始预拉力设置建议,可以为其结构抗风设计提供参考。 展开更多
关键词 柔性光伏支架 双层索系 静力性能 动力响应 风振系数
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新型圆筒式电涡流阻尼器性能优化及试验研究
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作者 姜岚 皮柯洋 +1 位作者 程若恒 唐波 《机械设计与制造》 北大核心 2024年第9期350-355,共6页
为了有效抑制输电铁塔钢管构件的涡激振动问题,设计了一种基于电涡流原理被动抑制的新型径向充磁圆筒式电涡流阻尼器。首先,提出了四种磁路的设计方案,分析了静态磁场的气隙密度分布,并采用瞬态分析方法,讨论了不同方案对阻尼器阻尼系... 为了有效抑制输电铁塔钢管构件的涡激振动问题,设计了一种基于电涡流原理被动抑制的新型径向充磁圆筒式电涡流阻尼器。首先,提出了四种磁路的设计方案,分析了静态磁场的气隙密度分布,并采用瞬态分析方法,讨论了不同方案对阻尼器阻尼系数的影响;最后提出了四种导体的设计构型,并对导体构型进行优化。针对最优构型的阻尼器,搭建了新型径向充磁圆筒式电涡流阻尼器在简谐载荷激励下的试验模型,通过试验与仿真的对比,验证了仿真结果的可靠性,且随着振动频率的增大,阻尼系数有减小的趋势。以期新型径向充磁圆筒式电涡流阻尼器能为输电钢管塔涡激减振提供初步参考。 展开更多
关键词 输电钢管塔 涡激振动 电磁阻尼器 阻尼系数
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大跨度铁路桥附属构件对不同宽高比矩形断面涡振性能的影响
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作者 黄林 董佳慧 +2 位作者 王骑 廖海黎 李志国 《中国铁道科学》 EI CAS CSCD 北大核心 2024年第2期81-89,共9页
在已建成的大跨度鳊鱼洲长江大桥原设计宽高比为6.7∶1的四线铁路桥矩形箱型主梁断面的基础上,通过调整断面宽高比,设计宽高比为4∶1的二线铁路和宽高比为9∶1的六线铁路桥矩形箱梁断面。通过节段模型风洞试验,在0°,±3°... 在已建成的大跨度鳊鱼洲长江大桥原设计宽高比为6.7∶1的四线铁路桥矩形箱型主梁断面的基础上,通过调整断面宽高比,设计宽高比为4∶1的二线铁路和宽高比为9∶1的六线铁路桥矩形箱梁断面。通过节段模型风洞试验,在0°,±3°和±5°风攻角的均匀来流下,对以上3种常用二线、四线和六线铁路桥矩形箱梁断面与对应相同宽高比纯矩形断面之间的涡振特性关系,以及铁路桥附属构件对不同宽高比矩形断面涡振性能的影响进行研究。结果表明:在宽高比分别为4∶1和6.7∶1的矩形断面上布置铁路桥附属构件能增大断面在负风攻角下的涡振振幅,在-5°风攻角下竖向涡振振幅增大率高达277.5%,但对正风攻角下的涡振响应起到一定的抑制作用,而在宽高比为9∶1的矩形断面布置六线铁路桥附属构件则能明显增大该断面在各风攻角下的涡振振幅,其扭转涡振振幅增大率均在48.3%以上;铁路桥附属构件对矩形断面涡振性能的降低作用随着断面宽高比的增大而提升,针对气动外形较钝的二线和四线铁路桥箱梁,可参考相似宽高比矩形断面涡振特性,并重点考察箱梁在负风攻角下的涡振响应,而针对宽高比较大的六线铁路桥箱梁,由于附属构件影响较大,参考相似宽高比矩形断面涡振特性的意义较小,均应详细研究其在各风攻角下的涡振性能。 展开更多
关键词 大跨度铁路桥 钢箱梁 节段模型 宽高比 矩形断面 附属构件 涡振性能 风洞试验
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