专题:Structural Engineering and Vibration Analysis

This cluster of papers focuses on the vibration serviceability of footbridges, particularly under human-induced excitation and pedestrian loads. It covers topics such as lateral vibration, dynamic interaction, crowd-structure interaction, modal analysis, and active vibration control. The cluster also discusses the specific challenges related to suspension bridges and the optimization of cable forces.
最新文献
Compressive-bending behavior of corrugated steel-concrete composite arches: Testing, modelling and design

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Axial compression behavior of corrugated steel-concrete composite arches

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Scale effects on buffeting response of long-span bridges

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A simplified analytical method of shear strength for an RC beam with a transverse circular opening

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Seismic Performance of a Novel Partially Embedded Transfer Connection with Wing Wall in Steel-Concrete Vertical Irregular Structures: Physical Tests and Theoretical Model

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Experimental and numerical study of seismic performance and failure mechanisms of multi-story elliptic and quasi-X braced resisting frames

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Hopf bifurcation analysis of actuated bogie with multiple delays

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Numerical analysis and design on the embedded column base for circular CFST under seismic loads

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Ensemble machine learning models for estimating mechanical curves of concrete-timber-filled steel tubes

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Optimization of semi-active tuned mass damper inerter for enhanced vibration control of jacket platforms using multi-objective optimization due to environmental load

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近5年高被引文献
Structural Improvement in Crane Boom Rest

article Full Text OpenAlex 494 FWCI218.848

Minimum Design Loads and Associated Criteria for Buildings and Other Structures

book Full Text OpenAlex 336 FWCI40.239

Inerter-based structural vibration control: A state-of-the-art review

review Full Text OpenAlex 332 FWCI8.377

Fundamentals of structural dynamics

book-chapter Full Text OpenAlex 326 FWCI171.072

Structural Improvement in Crane Boom Rest

article Full Text OpenAlex 240 FWCI105.88

Tailored Mechanical Metamaterials with Programmable Quasi‐Zero‐Stiffness Features for Full‐Band Vibration Isolation

article Full Text OpenAlex 211 FWCI19.9

Vibration suppression of structures using tuned mass damper technology: A state-of-the-art review

review Full Text OpenAlex 191 FWCI4.797

Bio-Inspired Vibration Isolation: Methodology and Design

article Full Text OpenAlex 176 FWCI17.58

A nonlinear vibration isolator supported on a flexible plate: analysis and experiment

article Full Text OpenAlex 150 FWCI18.27

X-shaped mechanism based enhanced tunable QZS property for passive vibration isolation

article Full Text OpenAlex 146 FWCI17.418