1)energy dissipation耗能减震
1.Based on the recent advancement in energy dissipation technology,some new systems of tall building with dissipated device are proposed in this paper,such as the system of high-level transfer structure with energy dissipation device,the tall building with energy-dissipation stories,mega braced frame with energy dissipators and the high-rise connected structure with energy dissipators.本文在分析几种高层建筑结构体系抗震性能不足的基础上,给合当今耗能减震技术的发展,提出了高位转换耗能减震结构体系、带耗能减震层高层结构体系、巨型框架-耗能减震结构体系和天连耗能减震结构体系等几种高层建筑耗能减震结构新体系,并总结了这些耗能减震结构新体系的初步分析研究结果。
2.According to the experiments,this paper examines the effects of energy dissipater,based upon the working prin- ciple of energy dissipation system and the main function of viscous fluid damper by oil,in terms of structure impetus re- sponse and technical economic feasibility.依据耗能减震体系的工作原理和油动式粘滞流体阻尼器的主要性能,结合实例从结构动力响应和技术经济可行性两方面进一步考察了耗能减震器的减震效果。
3.Structural shock absorption by viscous dampers is one of the most effective energy dissipation methods.利用粘滞阻尼器对工程结构进行减震是耗能减震方法中最有效的新型抗震技术之一。
英文短句/例句
1.The shock absorption properties of Pall frictional energy dissipation shock absorberPall摩擦耗能减震器减震性能研究
2.Seismic Analysis on Frame-Tube Structure with Seismic Energy Dissipation Story;带耗能减震层的框架—核心筒结构抗震性能分析
3.Studies on Performance-Based Seismic Design Method for Steel Structure with Dampers;耗能减震钢结构基于性能的抗震设计方法研究
4.Performance-Based Seismic Design Method for Passive Energy Dissipated Steel Structures;被动耗能减震钢结构基于性能的抗震设计方法
5.Performance-Based Seismic Design Method for Buildings Equipped with Passve Energy Dissipation Systems;被动耗能减震结构基于性能的抗震设计方法
6.Analytical Studies on the System of High-level Transfer Structure with Energy Dissipated Device;高位转换耗能减震结构体系分析研究
7.Rearch on the Total Energy Consumption Ratio of Dampers between Stories in Passive Energy Dissipation Structures耗能减震结构中耗能器总耗能层间分配比例研究
8.Passive Energy Dissipation Control Analysis of the Eccentric Structure Earthquake Torsional Response;偏心结构地震扭转反应的耗能减震控制分析
9.Study on Ductile Earthquake-resisting and Metal Damping of Self-anchored Suspension Bridge自锚式悬索桥延性抗震和金属耗能减震研究
10.Seismic Response Analysis on Frame-Supported Shear-Wall Structures and Their Effects of Energy Dissipation and Seismic Mitigation框支剪力墙耗能减震结构的地震反应分析
11.Study on Vibration Damping Properties of External Wall Panels of Industrialized Housing工业化住宅外挂墙板耗能减震性能研究
12.Abstract: The friction energy dissipator is a seismic response damping device with simple structure and easy installation.文摘:摩擦耗能器是一种构造简单、制作方便的耗能减震装置。
13.Analysis on Passive Energy Dissipation Mechanism of Ancient Timber Lifted Beam Structure;木结构古建筑殿堂型结构的耗能减震机理分析
14.The Design and Analysis Based Energy Dissipation for Short-Piered Shear Wall Structure with High-Level Transfer Floor;高位转换短肢剪力墙结构耗能减震设计与分析
15.Nonlinear Static Procedure for Friction Dissipative Structure Systems;摩擦耗能减震结构分析设计的非线性静力方法
16.Study on Analysis and Design Methods of Passive Energy Dissipation Systems;被动耗能减震结构的分析与设计方法研究
17.Study on influence of column axial force on the dissipative buildings位移型耗能减震结构对框架柱轴力影响的研究
18.Seismic Response Analysis and Experimental Research on Frame Supported Shear-Wall Energy Dissipation and Seismic Mitigation Structures;框支剪力墙耗能减震结构的地震反应分析和试验研究
相关短句/例句
passive control耗能减震
3)energy dissipating减震耗能
4)Seismic Energy Dissipation Story耗能减震层
1.Seismic Analysis on Frame-Tube Structure with Seismic Energy Dissipation Story;带耗能减震层的框架—核心筒结构抗震性能分析
2.Seismic responses are analyzed on structure with strengthened story and with viscous seismic energy dissipation story in example of a super high-rise building.以某超高层建筑为例,对带加强层结构和带粘滞耗能减震层结构的地震反应进行了对比分析,分析结果表明:(1)带粘滞耗能减震层结构的地震反应明显小于带加强层结构的地震反应;(2)在地震作用下,带粘滞耗能减震层结构比带加强层结构的内力分布更为均匀,结构内力无明显突变现象;(3)带粘滞耗能减震层结构不会产生应力集中现象。
5)energy dissipation device耗能减震装置
1.Due to the mechanical simplicity and the stability of energy dissipation capacity,several types of friction dampers have been widely employed in full-scale structures as an effective energy dissipation device.摩擦耗能器是一种构造简单、耗能机理明确、耗能能力大且性能稳定的耗能减震装置,在实际工程中已得到较为广泛的应用。
6)damping and energy dissipation structure减震耗能结构
延伸阅读
6JX防冲击橡胶减震器分子式:CAS号:性质:属非线性大变形隔震防冲橡胶元件。由于其固有频率低、隔振效果好、承载范围宽、等频性好,特别适应于变负荷条件下的防冲击设备。为封闭结构,即使橡胶破裂,设备与基础也不脱开,可保证正常工作。适合于船舶、车辆等随机震动和冲击隔离要求较高的动力机械及电子设备等。