首页> 外文期刊>Engineering Structures >Application of nonlinear fluid-structure interaction methods to seismic analysis of anchored and unanchored tanks
【24h】

Application of nonlinear fluid-structure interaction methods to seismic analysis of anchored and unanchored tanks

机译:非线性流固耦合方法在锚罐和非锚罐地震分析中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

Seismic response of liquid storage tanks is quite different from conventional structures not only due to hydrodynamic effects acting on the tank shell but also owing to many sources of nonlinear behavior mechanisms of tanks such as buckling of the tank shell, large amplitude nonlinear sloshing, nonlinear tank-soil interaction, material yielding, plastic rotation of base plate and successive contact and separation between tank base and soil. For the assessment of earthquake response of such structures, numerical methods are indispensable tools since they offer a concise way of accurately considering all these nonlinearities in the same model. Yet, before using numerical techniques for design purposes for the evaluation of different configurations of the fluid-tank systems when subjected to several earthquake ground motions, they should be validated by experimental results. For this purpose, in this study, a fully nonlinear fluid-structure interaction algorithm of finite element method is employed for the seismic analysis of anchored and unanchored steel liquid storage tanks. An existing experimental study carried out on anchored and unanchored tanks is utilized for the verification of the numerical procedure. In the numerical models, Arbitrary Lagrangian Eulerian (ALE) description of the liquid-structure interface which is described by the mesh nodes at the boundary is employed. Fluid motion is governed by compressible Navier-Stokes equations. Both material and geometric nonlinearities are considered in order to accurately determine stress, strain and strain rate distributions throughout the tank. Successive contact and separation between base plate and foundation along with friction effects are taken into account by contact modeling algorithm. Response parameters of tanks, such as free surface sloshing wave height, pressure time histories, base plate uplifting and shell stresses obtained by numerical simulations are correlated with those of experimentally observed. By means of experimental and numerical results, the principal effects of base uplifting on the seismic response of unanchored cylindrical steel tank are highlighted with comparing that of rigidly restrained tank. Moreover, the provisions given in the current tank seismic design codes for metal cylindrical tanks are discussed and the response parameters of tanks are computed per minimum requirements of these codes. The results are compared with findings of numerical and experimental studies and the comments on the consistency of these results are explained in detail. Strong correlation between the experimental and numerical results is obtained for investigated response parameters although code requirements present deviations from the reference experimental study especially for uplift displacement and free surface wave height.
机译:储液罐的地震响应与常规结构有很大不同,不仅是由于作用在罐壳上的流体动力效应,而且还归因于罐的非线性行为机理的许多来源,例如罐壳的屈曲,大振幅非线性晃荡,非线性罐-土壤相互作用,材料屈服,底板塑性旋转以及罐底与土壤之间的连续接触和分离。对于评估此类结构的地震响应,数值方法是必不可少的工具,因为它们提供了一种精确地考虑同一模型中所有这些非线性的简洁方法。但是,在将数值技术用于设计目的时,在经历几次地震地震动时评估液罐系统的不同配置之前,应通过实验结果对其进行验证。为此,在本研究中,采用有限元方法的全非线性流固耦合算法对锚固和非锚固钢制储罐进行地震分析。现有的对锚固坦克和非锚固坦克进行的实验研究被用于数值程序的验证。在数值模型中,采用了液-界面界面的任意拉格朗日欧拉(ALE)描述,该边界由网格节点描述。流体运动由可压缩的Navier-Stokes方程控制。考虑材料和几何非线性,以便准确确定整个储罐的应力,应变和应变率分布。接触建模算法考虑了基板与基础之间的连续接触和分离以及摩擦效果。通过数值模拟获得的储罐响应参数,如自由表面晃动波高,压力时间历程,底板隆起和壳应力等与实验观测值相关。通过实验和数值结果,与刚性约束钢罐比较,突出了基础抬升对无锚圆柱钢罐地震响应的主要影响。此外,还讨论了目前的金属圆筒形储罐抗震设计规范中的规定,并根据这些规范的最低要求计算了储罐的响应参数。将结果与数值研究和实验研究的结果进行比较,并对这些结果的一致性进行详细解释。尽管规范要求相对于参考实验研究存在偏差,但对于要求的响应参数却获得了与实验结果和数值结果之间的强相关性,特别是对于上浮位移和自由表面波高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号