Vibration performance characteristics of a long-span and light-weight concrete floor under human-induced loads

논문상세정보
    • 저자 Liang Cao Jie-Peng Liu Xu-Hong Zhou Y. Frank Chen
    • 제어번호 105082545
    • 학술지명 Structural Engineering and Mechanics, An Int'l Journal
    • 권호사항 Vol. 65 No. 3 [ 2018 ]
    • 발행처 국제구조공학회
    • 자료유형 학술저널
    • 수록면 349-357
    • 언어 English
    • 출판년도 2018
    • 등재정보 SCIE;SCOPUS
    • 판매처
    유사주제 논문( 0)

' Vibration performance characteristics of a long-span and light-weight concrete floor under human-induced loads' 의 참고문헌

  • Vibration serviceability performance of an externally prestressed concrete floor during daily use and under controlled human activities
    Chen, J. [2016]
  • Vibration serviceability of footbridges under human- induced excitation: A literature review
  • Vibration performance assessment of a long-span concrete floor using field measurement over a five-year period
    Chen, J. [2014]
  • Vibration of pre-stressed cable RC truss floor system due to human activities
    Zhou, X.H. [2016]
  • Vibration of Elastic Rectangular Thin Plate
  • Vibration design of floor systems of Beijing Yintai center
    Lv, Z.C. [2007]
  • Vibration Problems in Structures
  • Universal response spectrum procedure for predicting walking-induced floor vibration
  • Steel Design Guide Series No. 11: Floor Vibrations due to Human Activity
  • Probabilistic modeling of walking excitation for building floors
  • Numerical and experimental analysis of the vibration serviceability of the Bears' Cage footbridge
  • Modal properties of beam-and-block pre-cast floors
    Pavic, A. [2008]
  • Measurement of floor vibrations using a heel drop test
  • Mathematical model to generate near-periodic human jumping force signals
    Racic, V. [2010]
  • Lateral vibration of footbridges by synchronous walking
  • JGJ 3-2010, Technical Specification for Concrete Structures of Tall Buildings
  • ISO 10137, Bases for Design of Structures-Serviceability of Buildings and Walkways against Vibrations
  • GB50010-2010, Code for Design of Concrete Structures
  • GB/T4883-2008, Statistical Interpretation of Data-Detection and Treatment of Outliers in Normal Sample
  • Finite element analysis for walking vibration problems for composite precast building floors using ADINA: Modeling, simulation, and comparison
    Chen, Y.C. [1999]
  • Experimental and analytical studies on the vibration serviceability of pre-stressed cable RC truss floor systems
    Zhou, X.H. [2016]
  • Experiment and analytical study on dynamic performance of timber-concrete beams
    Rijal, R. [2015]
  • Dynamics of Structures Theory and Application to Earthquake Engineering, 2nd Edition
  • Dynamic performance characteristics of an innovative hybrid composite floor plate system under human-induced loads
  • Dynamic performance characteristics of an innovative cable supported beam structure-concrete slab composite floor system under human-induced loads
    An, Q. [2016]
  • Dynamic characteristics of steel-deck composite floors under human-induced loads
  • Development of non-contact scanning vibration measurement system for real-scale structures
    Kaito, K. [2005]
  • Design of Floors for Vibration: A New Approach
    Smith, A.L. [2009]
  • Design of Floor System for the Vibration Serviceability
    Lou, Y. [2012]
  • Application of state-of-the-art in measurement and data analysis techniques for vibration evaluation of a tall building
    Dorvash, S. [2014]
  • Acceleration response spectrum for predicting floor vibration due to occupant walking
    Chen, J. [2014]
  • Acceleration response of pestressed cable RC truss floor system subjected to heel-drop loading
    Zhou, X.H. [2016]
  • AS 2670.2, Mechanical Vibration and Shock Human Effects. Evaluation of Human Exposure to Whole-Body Vibration Part 2: Continuous and Shock-Induced Vibration in Buildings (1 to 80 Hz)
  • AS 2670.1, Mechanical Vibration and Shock Human Effects. Evaluation of Human Exposure to Whole-Body Vibration Part 1: General Requirements