纸质出版:2018
移动端阅览
[1]张如林,张志伟,程旭东,管友海.地震动频谱特性对罐液体系地震响应的影响分析[J].防灾减灾工程学报,2018,38(03):441-447.
张如林, 张志伟, 程旭东, et al. The Effect of Earthquake Frequency Characteristics on the Seismic Behavior of Tank-liquid System[J]. 2018, 38(3): 441-447.
[1]张如林,张志伟,程旭东,管友海.地震动频谱特性对罐液体系地震响应的影响分析[J].防灾减灾工程学报,2018,38(03):441-447. DOI: 10.13409/j.cnki.jdpme.2018.03.006.
张如林, 张志伟, 程旭东, et al. The Effect of Earthquake Frequency Characteristics on the Seismic Behavior of Tank-liquid System[J]. 2018, 38(3): 441-447. DOI: 10.13409/j.cnki.jdpme.2018.03.006.
基于拉格朗日方法建立考虑流固耦合效应的位移格式的运动方程
运用ANSYS建立立式拱顶储罐的三维有限元模型
分别选取短周期成分丰富(S1)、普通地震波(S2)和长周期成分丰富(S3)的三条天然地震波
分析了地震波频谱特性对液体晃动、罐底剪力、弯矩以及罐壁响应等结果的影响。研究表明
罐液体系自振频率存在两个明显频段
即液体晃动低频率段(长周期)和罐液耦联振动高频率段(短周期)。罐液体系的动力响应对地震波频谱特性的影响较为敏感。S3地震波卓越周期最接近罐液晃动周期
引起液面大幅度晃动
较其他增长4倍。罐液耦联振动对轴向应力响应影响最大
S1地震波卓越周期最接近罐液耦联振动周期
其引起罐底轴向压应力超过规范许用应力
出现明显"象足"屈曲变形。罐底剪力和弯矩受耦联振动影响最大
而液体晃动对其影响较小
地震激励仅引起液体表面少量单元产生对流运动。
Based on the Lagrangian approximation method
the motion equation of the displacement scheme considering the liquid-structure interaction is established
and a three-dimensional(3-D)finite element model of the vertical tank is constructed by using ANSYS.There natural seismic waves with rich short-period content(S1)
rich moderate-period content(S2)and rich long-period content(S3)are selected as inputs
and the effect of seismic wave spectrum characteristics on the simulated results of liquid sloshing
shear force and bending moment of the base
and tank wall stresses are analyzed.The results show that there are two obvious frequency bands in the natural frequency of the tank-liquid system
i.e.
the low frequency band(long period)of liquid convective motion
and the high frequency(short period)of coupling vibration of the tankliquid system.The predominant period of the S3 seismic wave is closest to that of the liquid convective motion
therefore induces obvious liquid sloshing
which is 4 times higher than that under the other two seismic waves.The effect of tank-liquid coupling vibration on the axial stress response is the greatest.The predominant period of the S1 seismic wave is closest to the tank-coupled vibration period
therefore induces the largest axial compressive stress of the tank
which has exceeded the allowable stress and results in significant "elephant-foot" buckling deformation.The shear force and bending moment of the tank base are most vulnerable to the influence of the tank-liquid coupling vibration
and the effect of liquid sloshing is very small.The seismic excitation only causes a convective motion of small amount of elements near the liquid surface.It is concluded that the dynamic behaviour of the fluid-tank system is highly sensitive to frequency characteristics of the earthquake record.
软土场地大型LNG储罐考虑桩土相互作用的地震响应分析 [J]. 刘帅,翁大根,张瑞甫. 振动与冲击 . 2014(07)
大型非锚固储液罐水平地震响应数值分析 [J]. 张孝春,蔡元奇. 武汉理工大学学报 . 2013(08)
储液罐地震安全问题研究综述 [J]. 方浩,吴昊,王笃国,陈国星. 震灾防御技术 . 2012(02)
立式储液罐提离机理及“象足”变形产生原因 [J]. 戴鸿哲,王伟,吴灵宇. 哈尔滨工业大学学报 . 2008(08)
水平地震激励下立式储罐与地基相互作用动力响应分析 [D]. 周利剑. 哈尔滨工程大学 2006
Evaluation of the effect of earthquake frequency content on seismic behavior of cantilever retaining wall including soil–structure interaction [J] . Tufan Cakir. Soil Dynamics and Earthquake Engineering . 2013
The effect of earthquake frequency content on the seismic behavior of concrete rectangular liquid tanks using the finite element method incorporating soil–structure interaction [J] . M.R. Kianoush,A.R. Ghaemmaghami. Engineering Structures . 2011 (7)
Effect of the model updating on the earthquake behavior of steel storage tanks [J] . Journal of Constructional Steel Research . 2009 (3)
Simple Procedure for Seismic Analysis of Liquid-Storage Tanks [J] . Malhotra,Wenk,Wieland. Structural Engineering International . 2000 (3)
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