Dissertation > Excellent graduate degree dissertation topics show
Seismic Response Analysis of the Superlong Space Grids Structures under Multi-Dimensional and Multi-Support Earthquake Excitations
Author: HuangZhan
Tutor: XueSuZuo
School: Beijing University of Technology
Course: Structural Engineering
Keywords: Superlong structure Square pyramid space grids Multidimensional and multiple excitation Time-history analysis Wave passage effect Partial coherence effect
CLC: TU311.3
Type: Master's thesis
Year: 2010
Downloads: 94
Quote: 0
Read: Download Dissertation
Abstract
|
Theoretical research and experience about earthquake damage are all showed that, earthquake ground motion is a complex multi-dimensional movement. For the important and complex structure, only considering one-dimensional seismic is not enough, it’s necessary to consider the combined effects of multiple seismic ground motion. In essence, ground motion is in the changes of space. Because of the limited wave spread velocity, loss of coherence, and different local site conditions, all these things can lead to the differences of seismic excitation appears significant in points of support. For the long-span structures, it has the characteristics of high freedoms, closely spaced frequencies, complex vibration mode and multidimensional vibration. Moreover, the structure strongly affected by spatial variation of ground motion for its large-scale. Therefore, for the long-span structures, it’s necessary to take into account the Multidimensional and multiple ground motion excitation.On the basis of the investigation background mentioned above, the text investigates on the multi-dimension and multi-support seismic reaction analysis of the large-span spatial grids structure from various aspects, and following achievements have been obtained:1) Relationship of structural length and multi-support excitation. The text compared the difference of structural response from the non-uniform excitation and uniform excitation by using large amount of counting examples, to which the influence of apparent wave velocity and structural length has also been analyzed. On the other hand, the minimum structural span which originated from the consideration of uniform excitation rather than non-uniform excitation was concluded by quantity of dangerous poles.2) Influence on overlong large-span spatial grids structure by wave passage effect. During the research of multi-dimension and multi-support input case, the influence on overlong large-span spatial structure by wave passage effect appears obvious, which is a most important factor among all the considerations. The text has made the analysis by using large amount of counting examples to cover the influence on large-span spatial structure and its dangerous poles by multi-dimension and multi-support input in terms of four different apparent wave velocity. 3) Influence on overlong large-span spatial grids structure by partial coherence effect. As one of the most important factors which affect the excitation difference of seism wave, partial coherence effect has been widely investigated by many scholars. It is demonstrated by most results that for multi-support excitation, whether the partial coherence effect should be considered has not reached a unified. For this situation, the text judges influence to the structure caused by partial coherence effect based on the dangerous poles, and an apparent result has been obtained.
|
Related Dissertations
- Based on Nonliner Finite Element Analysis of the Infilled Wall Frame Structure,TU323.5
- Multi-storey Steel Structure Design Method Based on Optimum Lateral Stiffness Distribution,TU973.13
- Study on Yield Mechanism of Reinforced Concrete Frame Structure’s Strong Column-Weak Beam under Rare Earthquake Action,TU275
- Span steel arch structure seismic performance of,TU352.11
- The dwarf tower cable-stayed bridge seismic response analysis and mitigation and isolation,U442.55
- Large-span steel box basket handle arch bridge dynamic characteristics of the high-speed rail and earthquake response analysis,U442.55
- The Influence Analysis of the Design Parameters of Large-span High Piers Bend Continuous Rigid-framed in the Natural Oscillation and Earthquake Response,U441.3
- The Analysis about Pounding of Simple Beam Bridge When Seismic Response,U441.3
- Analysis and Research on Windproof of Continuous Rigid-frame Bridge,U441.3
- Study on Seismic Performance Analysis of the Long-Span Structure for Coal-Conveyer Gallery,U442.55
- The Application Research of High-level Steel Frame-support Structure System in High-intensity Area,TU973.13
- The Elastic-plastic Earthquake Response Analysis of Out-of-code High-rise Structure with Shear Wall,TU973.2
- The Analysis of the Structure Stability of Zhonghui Plaza Mansion,TU311.2
- The Wind Performance Research of the Large Span Beam String Structure,TU399
- Exterior insulation and finish systems earthquake analysis,TU761.12
- Seismic Design Seismic Response input wave selection and virtual space realization,TU352.11
- Research on "Strong Column Weak Beam" Yield Mechanism Factors of Reiforced Concrete Frame Structure,TU375.4
- Study on Influence of Uneven Settlement of Ground Surface in Rc Frames Structure,TU375.4
- Anti-Seismic Researches on A New Type of Light Guage Steel Framed Residences,TU352.11
- Design and Research on A New Type of Roller Ball Seismic Isolator,TU352.12
- Mechanical Behavion Analysis of Free-form Surface Structure,TU399
CLC: > Industrial Technology > Building Science > Building structure > Structure theory to calculate > Structural Mechanics > Structural Dynamics
© 2012 www.DissertationTopic.Net Mobile
|