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风的模拟及抛物面天线的风荷响应 被引量:6
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作者 毕明路 《计算机仿真》 CSCD 2003年第8期130-132,共3页
该文首先对脉动风进行了描述 ,并用随机过程理论进行模拟处理 ;然后将其转换成脉动风荷作用于天线 ,再用随机振动原理 ,分析计算了某抛物面天线的风荷响应 ,从而验证了天线的刚度和强度 ,为改进设计提供了依据。以往采用静力学的方法 ,... 该文首先对脉动风进行了描述 ,并用随机过程理论进行模拟处理 ;然后将其转换成脉动风荷作用于天线 ,再用随机振动原理 ,分析计算了某抛物面天线的风荷响应 ,从而验证了天线的刚度和强度 ,为改进设计提供了依据。以往采用静力学的方法 ,只考虑稳态风或用经验估算法来近似估算脉动风对天线的影响 ,这是不够的或是不准确的。该文提出了一个将脉动风荷进行适时量化处理并分析其对天线影响效果的计算方法。解决了天线设计中风荷计算这一难题 ,使天线设计更加科学、合理。 展开更多
关键词 抛物面天线 风荷响应 脉动风 模拟 随机振动
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塔设备风荷响应的研究 被引量:1
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作者 张玉英 谭建一 《河南化工》 CAS 1996年第9期26-28,共3页
应用动态有限单元方法,对应用于石油化工、炼油、化肥等工业的塔设备进行了动态特性和风荷响应的研究,编制了计算机程序DYL—Ⅰ、Ⅱ、Ⅲ,有效地提高了塔设备动力特性的计算精度,并与经验公式、传递矩阵法、常规有限单元法进行了比较.为... 应用动态有限单元方法,对应用于石油化工、炼油、化肥等工业的塔设备进行了动态特性和风荷响应的研究,编制了计算机程序DYL—Ⅰ、Ⅱ、Ⅲ,有效地提高了塔设备动力特性的计算精度,并与经验公式、传递矩阵法、常规有限单元法进行了比较.为塔设备的强度研究、稳定性分析、结构疲劳寿命预估提供了理论依据. 展开更多
关键词 动态有限单元法 塔设备 风荷响应
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Passive control of along-wind response of tall building 被引量:2
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作者 KIM Young-moon YOU Ki-pyo YOU Jang-youl 《Journal of Central South University》 SCIE EI CAS 2014年第10期4002-4006,共5页
Most of modern tall buildings using lighter construction materials with high strength and less stiffness are more flexible, which occurs excessive wind-induced vibration, resulting in occupant discomfort and structura... Most of modern tall buildings using lighter construction materials with high strength and less stiffness are more flexible, which occurs excessive wind-induced vibration, resulting in occupant discomfort and structural unsafety. It is necessary to predict wind-induced vibration response and find out a method to mitigate such an excessive wind-induced vibration at the preliminary design stage. Recently, many studies have been conducted in using actuator control force based on the linear quadratic optimum control algorithm. It was accepted as a common knowledge that the performance of passive tuned mass damper(TMD) could increase by incorporating a feedback active control force in the design of TMD, which is called active tuned mass damper(ATMD). However, the fact that ATMD is superior to TMD to reduce wind-induced vibration of a tall building is still a question. The effectiveness of TMD for mitigating the along-wind vibration of a tall building was investigated. Optimum parameters of tuning frequency and damping ratio for TMD under a random load which has a white noise spectra were used. Fluctuating along-wind load acting on a tall building treated as a stationary Gaussian random process was simulated numerically using the along-wind load spectra. And using this simulated along-wind load, along-wind responses of a tall building with and without TMD were calculated and the effectiveness of TMD in mitigating the along-wind response of a tall building was found out. 展开更多
关键词 tuned mass damper(TMD) along-wind vibration tall building
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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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Numerical Simulation of the Spreading Dynamic Responses of the Multibody System with a Floating Base
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作者 Zhaobing Jiang Luzhong Shao Fei Shao 《Journal of Marine Science and Application》 CSCD 2015年第3期290-301,共12页
To simulate the dynamic responses of the multibody system with a floating base when the upper parts spread with a certain sequence and relative speed, the homogeneous matrix method is employed to model and simulate a ... To simulate the dynamic responses of the multibody system with a floating base when the upper parts spread with a certain sequence and relative speed, the homogeneous matrix method is employed to model and simulate a four-body system with a floating base and the motions are analyzed when the upper parts are spread sequentially or synchronously. The rolling, swaying and heaving temporal variations are obtained when the multibody system is under the conditions of the static water along with the wave loads and the mean wind loads or the single pulse wind loads, respectively. The moment variations of each joint under the single pulse wind load are also gained. The numerical results showed that the swaying of the floating base is almost not influenced by the spreading time or form when the upper parts spread sequentially or synchronously, while the rolling and the heaving mainly depend on the spreading time and forms. The swaying and heaving motions are influenced significantly by the mean wind loads. The single pulse wind load also has influences on the dynamic responses. The torque of joint 3 and joint 4 in the single pulse wind environment may be twice that in the windless environment when the system spreads with 60 s duration. 展开更多
关键词 multibody system Floating base spreading form dynamic response homogeneous matrix method wave load wind load
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A simplified model to predict blast response of CFST columns
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作者 ZHANG Jun-hao CHEN Bin JIANG Shi-yong 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第3期683-691,共9页
In order to study the dynamic response of concrete-filled steel tube(CFST) columns against blast loads,a simplified model is established utilizing the equivalent single-degree-of-freedom(SDOF) method,which considers t... In order to study the dynamic response of concrete-filled steel tube(CFST) columns against blast loads,a simplified model is established utilizing the equivalent single-degree-of-freedom(SDOF) method,which considers the non-uniform distribution of blast loads on real column and the axial load-bending moment(P-M) interaction of CFST columns.Results of the SDOF analysis compare well with the experimental data reported in open literature and the values from finite element modeling(FEM) using the program LS-DYNA.Further comparisons between the results of SDOF and FEM analysis show that the proposed model is effective to predict the dynamic response of CFST columns with different blast conditions and column details.Also,it is found that the maximum responses of the columns are overestimated when ignoring the non-uniformity of blast loads,and that neglecting the effect of P-M interaction underestimates the maximum response of the columns with large axial load ratio against close range blast.The proposed SDOF model can be used in the design of the blast-loaded CFST columns. 展开更多
关键词 concrete-filled steel tube (CFST) columns dynamic response single-degree-of-freedom (SDOF) analysis non-uniformblast loads axial load-bending moment (P-M) interaction
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3D wind-induced response analysis of a cable-membrane structure
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作者 Jun-jie LUO Da-jian HAN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第3期337-344,共8页
Wind loading is a dominant factor for design of a cable-membrane structure. Three orthogonal turbulent components, including the longitudinal, lateral and vertical wind velocities, should be taken into account for the... Wind loading is a dominant factor for design of a cable-membrane structure. Three orthogonal turbulent components, including the longitudinal, lateral and vertical wind velocities, should be taken into account for the wind loads. In this study, a stochastic 3D coupling wind field model is derived by the spectral representation theory. The coherence functions of the three orthogonal turbulent components are considered in this model. Then the model is applied to generate the three correlated wind turbulent components. After that, formulae are proposed to transform the velocities into wind loads, and to introduce the modified wind pressure force. Finally, a wind-induced time-history response analysis is conducted for a 3D cable-membrane structure. Analytical results indicate that responses induced by the proposed wind load model are 10%-25% larger than those by the con- ventional uncorrelated model, and that the responses are not quite influenced by the modified wind pressure force. Therefore, we concluded that, in the time-history response analysis, the coherences of the three orthogonal turbulent components are necessary for a 3D cable-membrane structure, but the modified wind pressure force can be ignored. 展开更多
关键词 Cable-membrane structures Time-history analysis COHERENCE Gust response factor
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