期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
某会展中心室内大跨度钢结构连廊结构设计与分析
1
作者 钟维浩 《广州建筑》 2024年第8期34-38,共5页
本文以广州某会展中心室内38 m大跨度连廊为对象进行设计分析。采用钢箱梁-砼组合结构型式,运用MIDAS GEN软件建立结构有限元模型,分析钢结构连廊的整体刚度、构件应力以及动力特性,并对比国内外的舒适度标准进行评价。分析结果表明,钢... 本文以广州某会展中心室内38 m大跨度连廊为对象进行设计分析。采用钢箱梁-砼组合结构型式,运用MIDAS GEN软件建立结构有限元模型,分析钢结构连廊的整体刚度、构件应力以及动力特性,并对比国内外的舒适度标准进行评价。分析结果表明,钢结构各构件最大应力值介于121 MPa~156 MPa之间,混凝土楼板最大压应力值为15.0 MPa,满足承载力要求;第一阶横向自振频率为5.9 Hz,可不考虑人群横向荷载激励作用,第一阶竖向自振频率为1.8 Hz,容易产生人行共振效应;人行激励竖向振动加速度最大值为0.19 m/s^(2),结合不同使用场景的舒适度标准,评价各工况下的峰值加速度可满足要求;增设谐调质量阻尼器(Tuned Mass Damper,TMD),可有效降低连廊的竖向振动加速度约60%,提高使用标准。本文的研究结果可以为室内大跨度连廊的结构设计工作提供参考与借鉴。 展开更多
关键词 大跨度钢连廊 有限元模型 舒适度 振动响应 谐调质量阻尼器(TMD)
在线阅读 下载PDF
桩基础上结构TMD控制的振动台模型试验研究 被引量:9
2
作者 楼梦麟 王文剑 +2 位作者 朱彤 马恒春 方重 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2001年第6期636-643,共8页
完成了土 桩 结构 TMD相互作用体系的振动台模型试验 .首次通过振动台模型试验研究了土 桩 结构相互作用对TMD振动控制的影响 .试验结果表明 :当TMD装置的自振频率和相互作用体系频率一致时 ,TMD控制效率最佳 ,但此时其控制效率仍... 完成了土 桩 结构 TMD相互作用体系的振动台模型试验 .首次通过振动台模型试验研究了土 桩 结构相互作用对TMD振动控制的影响 .试验结果表明 :当TMD装置的自振频率和相互作用体系频率一致时 ,TMD控制效率最佳 ,但此时其控制效率仍远不及刚性基础上TMD控制效率高 ,表明土 结构相互作用效应使TMD装置的减振效率大大降低 ,在一些情况下TMD装置甚至对结构起到负面作用 . 展开更多
关键词 土-桩-结构相互作用 谐调质量阻尼器 振动台模型试验 TMD振动控制 桩基础 减振效率
在线阅读 下载PDF
Passive control of along-wind response of tall building 被引量:2
3
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
在线阅读 下载PDF
A novel tuned heave plate system for heave motion suppression and energy harvesting on semi-submersible platforms 被引量:1
4
作者 LIU Kun OU Jin Ping 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第6期897-912,共16页
Deepwater offshore structures such as semi-submersible platforms suffer powerful ocean waves due to their location and site condition. The long distance away from the shore also brings many difficulties to energy supp... Deepwater offshore structures such as semi-submersible platforms suffer powerful ocean waves due to their location and site condition. The long distance away from the shore also brings many difficulties to energy supply for the platform operation. How to reduce the response of the platform and convert the wave energy into electrical power is a meaningful topic. In this paper, a tuned heave plate system(THP) is presented and designed to be employed on a semi-submersible platform for heave motion suppression and energy harvesting. This THP system is composed of spring supports, a power take-off system(PTO), and a heave plate. The PTO system is a permanent magnet linear generator(PMLG), which could directly convert the kinetic energy of the heave plate into electronic power. The stiffness of the spring supports is designed based on the principle of the tuned mass damper(TMD). The numerical model of the platform and the THP system is established according to the hydrodynamic analysis results of the platform. The model is tested and modified by scale model tests on the platform in the wave tank. A parameter study, including the size, tuned period, and damping ratio of the THP system, is conducted systematically based on the numerical model. The optimal parameters of the THP are selected due to the maximum heave motion reduction under severe wave conditions in South China Sea. The performance of the semi-submersible with and without the THP system under different wave conditions is analyzed. It is demonstrated that this novel tuned heave plate system could reduce the heave motion of the semi-submersible platform significantly and generate considerable power, which makes the THP system have a broad prospect for development. 展开更多
关键词 heave motion SEMI-SUBMERSIBLE wave energy harvesting wave energy converter TMD
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部