Improvement Technology on Building Seismic Toughness
Materialtyp:
ArtikelUtgivningsinformation: MDPI - Multidisciplinary Digital Publishing Institute 2024Beskrivning: 1 electronic resource (274 p.)Innehållstyp: - text
- computer
- online resource
- 9783725805594
- 9783725805600
- Medicine
- Medical specialties, branches of medicine
- Pharmacology
- Psychopharmacology
- 1 rectangular cylinders in tandem
- RC columns
- VIV behavior
- aftershock fragility assessment
- axial dynamic load
- base isolation
- bond-slip behavior
- cable-stayed bridge
- coal gangue coarse aggregate
- coal gangue concrete
- column
- confined concrete
- constitutive model
- continuous girder bridges
- correlation analysis
- crossing faults
- crowd load
- cyclic loading
- cyclic loading test
- damage concentration
- damage index
- damper
- ductility
- dynamic response
- earthquake
- energy dissipation
- energy-dissipating steel hinges
- finite element calculation
- fire and dynamic loads
- footbridge
- formula derivation
- fragility analysis
- high-damping rubber
- hyperelastic composite material
- incremental dynamic analysis
- intensity measure
- isolation properties
- layout
- lead rubber bearing
- linear friction damper
- linear natural rubber bearing (LNR)
- machine learning
- mass ratio
- metal bellows
- multi-spiral stirrup
- near-fault (NF) ground motions
- near-fault isolation
- nonlinear viscous damper (NLVD)
- numerical simulation
- post-earthquake resilience
- pressure measurement testing
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This Reprint focuses on recent studies on the seismic performance evaluation and improvement of infrastructures, including buildings and bridges. The development and application of base isolators and dampers to enhance the seismic resilience of structures is of particular interest. In addition, multi-hazard assessment considering earthquakes and other hazards such as fire and pedestrian-induced vibration is another interest. The adopted research techniques include the traditional finite element method, experimental tests, and the up-to-date machine learning-based approach.
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eng
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