消能减震

  • 网络Energy dissipation;seismic energy dissipation
消能减震消能减震
  1. 自锚式悬索桥的粘滞阻尼器减震控制粘滞阻尼墙是一种性能良好的消能减震部件。

    Seismic Response Control of Self-Anchored Suspension Bridge with Viscous Dampers The viscous damping wall is a type of energy dissipation device for building structures .

  2. 结构抗震加固和消能减震优化设计方法

    Optimum Design Method of Structure Seismic Strengthening and Passive Energy Dissipation

  3. 基于pushover分析方法,提出粘滞阻尼器消能减震结构的一个简化设计方法。

    A simplified design method based on pushover analysis was developed for energy dissipation systems using viscous dampers .

  4. SATMD与消能减震相结合的混合控制研究

    Study on hybrid control of semi-active tuned mass damper combined with energy dissipation system

  5. 根据模糊理论及抗震结构混合控制理论,利用MATLAB语言编制了一套能对被动调谐质量阻尼器(PTMD)及消能减震相结合的体系进行弹塑性时程分析的计算机程序。

    In this paper , based on the fuzzy theory and hybrid control theory of aseismatic structure , a Matlab program is developed to conduct elastoplastic time history analysis of the energy dissipation system in combination with the passive tuned mass damper ( PTMD ) .

  6. 最后提出了PTMD及消能减震相结合的体系的实用设计方法,同时给出数值算例以证实该控制体系在降低结构地震反应方面的有效性。

    In addition , a practical design method combining the energy dissipation system with the PTMD is put forward , and a numerical example is given to demonstrate the effectiveness of the control system in reducing the structural earthquake response .

  7. 消能减震结构附加等效阻尼比计算方法

    Calculation method for additional equivalent damping ratio of energy dissipation structure

  8. 消能减震结构设计的阻尼比研究

    Study on damping ratio of a structure with energy dissipation devices

  9. 液体粘滞阻尼消能减震结构设计方法

    Design of Structures with Fluid Viscous Dampers for Earthquake Energy Dissipation

  10. 消能减震结构设计参数研究与试验验证

    Study on design parameters of energy dissipation structures with experiment verification

  11. 工程结构采用阻尼消能减震的反应谱分析方法

    Study on Response Spectrum Method of Engineering Structure Using Damping Dissipation Energy

  12. 消能减震结构设计计算精度的比较研究

    Comparative study on design calculation accuracy of structure with energy dissipation devices

  13. 粘滞阻尼器消能减震结构的简化设计

    Simplified Design Method for Energy Dissipation Systems Using Viscous Dampers

  14. 防屈曲支撑框架结构设计及消能减震效果分析研究

    Design and Analysis of Seismic Performance of Buckling-Restrained Braced Frames

  15. 粘弹性阻尼器混凝土框架结构消能减震分析

    The energy dissipation analysis of viscoelastic dampers concrete frame structure

  16. 房屋建筑顶层采用橡胶支承的消能减震

    Reduction Vibration with Rubber Shock Absorber Under Top Storey in the Building

  17. 粘弹性消能减震结构设计参数研究

    Study on Design Parameters of Engineering Structure Using Viscoelastic Dampers

  18. 框架结构消能减震的试验研究

    Experimental Study on Seismic Control and Energy Dissipation of RC Frame Structures

  19. 液体粘滞阻尼消能减震技术的探讨

    Discussion on Liquid Viscous Damping Technology for Earthquake Absorption

  20. 自锚式悬索桥结构消能减震设计方法研究

    Study on the Damped Energy-dissipated Earthquake-reduction Technique of Self - anchored Suspension Bridges

  21. 基于性能的消能减震结构抗震设计思想研究

    Idea Study of Performance - based Seismic Design for the Energy Dissipation Structure

  22. 可控消能减震原理及结构分析

    Basic theory of controlling energy dissipation and structural analysis for reducing earthquake response

  23. 设置软钢阻尼器的钢框架消能减震性能研究

    Study on passive energy dissipation performance of steel frame with mild steel damper

  24. 消能减震技术的工程应用与展望

    Application and prospect of seismic energy dissipation technique

  25. 基于拟力法的消能减震结构地震反应分析

    Analysis of seismic response of structures with dissipation devices by using fictitious force method

  26. 抗震加固用消能减震结构的弹塑性时程分析研究

    Research of elastic-plastic time history analysis on seismic retrofitting of the energy dissipation structures

  27. 多点输入下大跨度空间结构的消能减震分析

    Seismic Energy Dissipation of Long - span Space Structures Under Multi - Support Excitation

  28. 消能减震的基本原理和实际应用

    Theory and application of energy dissipation-seismic reduction technology

  29. 消能减震建筑结构的计算分析

    Optimization of Energy Dissipation Braces in Frame Structures

  30. 考虑平-扭耦联效应的消能减震结构振动反应分析

    Dynamical analysis of structure with energy dissipation devices considering coupled translation and torsion deformation