Review of seismic studies of liquid storage tanks

논문상세정보
    • 저자 Ming Zhao Junwen Zhou
    • 제어번호 106059321
    • 학술지명 Structural Engineering and Mechanics, An Int'l Journal
    • 권호사항 Vol. 65 No. 5 [ 2018 ]
    • 발행처 국제구조공학회
    • 자료유형 학술저널
    • 수록면 557-572
    • 언어 English
    • 출판년도 2018
    • 등재정보 SCIE;SCOPUS
    • 판매처
    유사주제 논문( 0)

' Review of seismic studies of liquid storage tanks' 의 참고문헌

  • Vibrations of Shells and Plates, 2nd Edition
    Soedel, W. [1981]
  • Vibration test of a 1/10 reduced scale model of cylindrical water storage tank
    Maekawa, A. [2010]
  • Vibration studies and tests of liquid storage tanks
  • Variable friction pendulum system for seismic isolation of liquid storage tanks
  • Uplifting response of unanchored liquid-storage tanks
  • Uplifting analysis of base plates in cylindrical tanks
  • Uncertainty quantification and seismic fragility of base-isolated liquid storage tanks using response surface models
    Saha, S.K. [2016]
  • Twodimensional viscous numerical simulation of liquid sloshing in rectangular tank with/without baffles and comparison with potential flow solutions
    Lu, L. [2015]
  • The tapered beam model for bottom plate uplift analysis of unanchored cylindrical steel storage tanks
    Ahari, M.N. [2009]
  • The pressure distribution on the rectangular and trapezoidal storage tanks' perimeters due to liquid sloshing phenomenon
  • The influence of foundation conditions on the earthquake response of two tanks
    Larkin, T. [2002]
  • The effect of seismic uplift on the shell stresses of liquid-storage tanks
    Ormeno, M. [2015]
  • The effect of earthquake frequency content on the seismic behavior of concrete rectangular liquid tanks using the finite element method incorporating soil-structure interaction
  • The dynamic behavior of water tanks
  • Tank damage during the May 1983 Coalinga earthquake
    Manos, G.C. [1985]
  • Study of baffle boundary and system parameters on liquid-solid coupling vibration of rectangular liquid-storage structure
    Jing, W. [2016]
  • Simulation of liquid sloshing in 2D containers using the volume of fluid method
    Elahi, R. [2015]
  • Simplified model for the seismic performance of unanchored liquid storage tanks
    Vathi, M. [2015]
  • Shake table test of cylindrical water tanks in base-isolated structures
  • Seismic response of soil-supported unanchored liquid-storage tanks
  • Seismic response of liquid storage tanks incorporating soil structure interaction
    Larkin, T. [2008]
  • Seismic response of base-isolated liquid storage tanks considering fluidstructure-soil interaction in time domain
    Cho, K.H. [2004]
  • Seismic response of base isolated liquid storage ground tanks
  • Seismic reliability of continuously supported steel wine storage tanks retrofitted with energy dissipation devices
  • Seismic proving test of equipment and structures in thermal conventional power plant
    Tazuke, H. [2002]
  • Seismic performance of storage steel tanks during the May 2012 Emilia, Italy, earthquakes
    Brunesi, E. [2015]
  • Seismic performance of industrial facilities affected by the 1999 Turkey earthquake
    Sezen, H. [2006]
  • Seismic isolation of rigid cylindrical tanks using friction pendulum bearings
    Wang, Y. [2001]
  • Seismic fragility of base-isolated water storage tanks under nonstationary earthquakes
    Saha, S.K. [2016]
  • Seismic effects in flexible liquid storage tanks
  • Seismic assessment of unanchored steel storage tanks by endurance time method
  • Seismic analysis of baseisolated liquid storage tanks
  • Seismic Design of Storage Tanks: Recommendations of a Study Group of the New Zealand National Society for Earthquake Engineering (NZSEE)
  • Rocking behavior of unanchored flatbottom cylindrical shell tanks under action of horizontal base excitation
  • Resonant frequencies in an elevated spherical container partially filled with water: FEM and measurement
  • Reduced order modeling of liquid sloshing in 3D tanks using boundary element method
  • Probabilistic seismic safety evaluation of precode cylindrical oil tanks
  • Parametric study on dynamic behavior of cylindrical ground-supported tanks
    Moslemi, M. [2012]
  • Optimal finite element modelling for modal analysis of liquid storage circular tanks
  • On the analysis of vertical circular cylindrical tanks under earthquake excitation at its base
  • Numerical study of threedimensional free surface dynamics
    Yue, B. [2006]
  • Numerical study of ring baffle effects on reducing violent liquid sloshing
    Xue, M. [2011]
  • Numerical simulation of sloshing in rectangular storage tank using coupled FEM-BEM
    Saghi, H. [2012]
  • Numerical investigation of a vertically baffled rectangular tank under seismic excitation
  • Numerical evaluation of nonlinear response of broad cylindrical steel tanks under multidimensional earthquake motion
    Ozdemir, Z. [2012]
  • Nonlinear treatment of liquid-filled storage tanks under earthquake excitation by a quasistatic approach
  • Nonlinear modeling of liquid sloshing in a moving rectangular tank
  • Liquid-solid interaction seismic response of an isolated overground rectangular reinforced-concrete liquid-storage structure
    Cheng, X. [2015]
  • Linear and nonlinear 2D finite element analysis of sloshing modes and pressures in rectangular tanks subject to horizontal harmonic motions
  • Investigation of seismic behavior of fluidrectangular tank-soil/foundation systems in frequency domain
  • Hydroelastic vibrations of flexible rectangular tanks partially filled with liquid
    Zhou, D. [2007]
  • Generalized SDOF system for seismic analysis of concrete rectangular liquid storage tanks
    Chen, J.Z. [2009]
  • Fundamental modes of tank-liquid systems under horizontal motions
  • Foundation Vibrations, Foundation Engineering Handbook, 2nd Edition, Chapter 15
    Gazetas, G. [1991]
  • Foundation Vibration Analysis: A Strength of Materials App
    Wolf, J.P. [2004]
  • Fluidstructure-soil interaction effects on seismic behaviour of elevated water tanks
  • Fluid-shell structure interaction analysis by coupled particle and finite element method
    Lee, C.J.K. [2007]
  • Fluid structure interaction modeling of liquid sloshing phenomena in flexible tanks
  • Fluid damping in rectangular tank fitted with various internal objects-an experimental investigation
    Nayak, S.K. [2015]
  • Finite element methodology for the evaluation of soil damping in LNG tanks supported on homogeneous elastic halfspace
  • Finite element analysis of the seismic response of anchored and unanchored liquid storage tanks
  • Experimental study of slip-friction connectors for controlling the maximum seismic demand on a liquid storage tank
    Ormeno, M. [2015]
  • Experimental studies on sloshing behavior due to horizontal movement of liquids in baffled tanks
  • Experimental investigation of pressure distribution on a rectangular tank due to the liquid sloshing
  • Eurocode 8, Earthquake Resistant Design of Structures, Part 4: Tanks Silos, and Pipelines
  • Eurocode 8, Design of Structures for Earthquake Resistance, Part 4: Silos, Tanks and Pipelines, BS EN 1998-4
  • Equivalent linear stochastic seismic analysis of cylindrical base-isolated liquid storage tanks
  • Effect of wall flexibility on dynamic response of concrete rectangular liquid storage tanks under horizontal and vertical ground motions
  • Effect of vertical acceleration on response of concrete rectangular liquid storage tanks
  • Effect of The Model Updating on The Earthquake Behavior of Steel Storage Tanks
  • Dynamic pressures on accelerated fluid containers
  • Dynamic experimental investigation on the uplift response of liquid storage tanks under seismic excitations with different characteristics
    Fang, Z. [2013]
  • Dynamic analysis of partially filled non-circular cylindrical shells with liquid sloshing
  • Dynamic analysis of fuel tank
    Mocilan, M. [2016]
  • Dynamic analysis of flexible rectangular fluid containers subjected to horizontal ground motion
    Hashemi, S. [2013]
  • Dynamic analysis and seismic performance evaluation of above-ground liquid-containing tanks
    Sezen, H. [2008]
  • Double variable frequency pendulum isolator for seismic isolation of liquid storage tanks
    Soni, D.P. [2011]
  • Discrete models for seismic analysis of liquid storage tanks of arbitrary shape and fill height
  • Design procedure for dynamic response of concrete rectangular liquid storage tanks using generalized SDOF system
    Chen, J.Z. [2015]
  • CFD simulations on the dynamics of liquid sloshing and its control in a storage tank for spent fuel applications
  • Buckling of cylindrical liquid storage tanks under earthquake loading
    Niwa, A. [1982]
  • Beam model for baseuplifting analysis of cylindrical tanks
  • Application of nonlinear fluid-structure interaction methods to seismic analysis of anchored and unanchored tanks
    Ozdemir, Z. [2010]
  • Analysis of Machine Foundation Vibrations: State of the Art
    Gazetas, G. [1983]
  • An efficient computational procedure for the dynamic analysis of liquid storage tanks
    Ruiz, R.O. [2015]
  • An analytically derived lumpedimpedance model for the dynamic behaviour of a water tower
  • An ISPH simulation of coupled structure interaction with free surface flows
    Liu, X. [2014]
  • Ambient vibration test and finite element modeling of tall liquid storage tanks
    Amiri, M. [2011]
  • API Standard 650, Steel Tanks for Oil Storage, 7th Edition, Appendix E
  • API 650, Welded Steel Tanks for Oil Storage
  • ACI 350.3, Seismic Design of liquid containing concrete Structures
    [2006]
  • A study on the sloshing of cargo tanks including hydroelastic effects
    Lee, D.Y. [1997]
  • A scaled boundary finite element approach for sloshing analysis of liquid storage tanks
    Lin, G. [2015]
  • A procedure for dynamic analysis of thin walled cylindrical liquid storage tanks subjected to lateral ground motions
  • A parametric sensitivity study on LNG tank sloshing loads by numerical simulations
    Lee, D.H. [2007]
  • A numerical study of the effects of the vertical baffle on liquid sloshing in two-dimensional rectangular tank
  • A New Dynamic Procedure for Evaluation of Steel Storage Tanks under Multidirectional Seismic Excitations