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FINITE-ELEMENT METHOD IN FLUID-STRUCTURE INTERACTION DYNAMICS AND APPLICATIONS TO UNDERWATER FRAME STRUCTURES.

机译:流固耦合动力学的有限元方法及其在水下框架结构中的应用。

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摘要

The purpose of this study is to provide an effective computational method of analysis capable of modeling fluid-solid systems under dynamic loads to calculate the hydrodynamic forces on the solid; then apply the results to investigate the behavior of underwater frame structures subjected to earthquake ground motions. The hydrodynamic forces induced on the solid body oscillating in a liquid are identified to be the drag force and the inertia force. The drag force is found to be negligible for cylindrical shapes when the diameter is in the order of 10 to 20 feet and when the cylinders are subjected to a dynamic motion, with frequencies and amplitudes within the range of frequency content and the amplitudes of an earthquake ground motion. It is shown that cavitation is unlikely to occur for the above conditions.;To study the hydrodynamic forces due to acceleration of a solid body, the Lagrangian finite element approach is employed. An effective finite element program is developed to model both the fluid and solid regions. With the finite element program developed, the hydrodynamic forces due to the small amplitude oscillation of a solid in a fluid is calculated. It is shown that the results of the finite element analysis are in good agreement with other analytical methods. The inertia forces calculated in this study are shown to be independent of the frequency of applied motion and are only a function of acceleration, fluid density, and shape for the range of frequencies in an earthquake ground motion. Thus the surrounding fluid (water) can be replaced by an additional mass which is called the 'added mass'.;The response of a submerged frame structure subjected to an earthquake ground motion is calculated. The effect of submergence is modeled by superimposing the 'added masses' to the real mass of the frame structure. Two analyses are performed; first, the analysis with the added masses obtained by the finite element method, and second, the analysis with the added masses obtained by a 'simplified' method. For the particular structure analyzed in this study, it is found that the member forces using the 'simplified' method are slightly higher than the analysis using the finite element method.
机译:这项研究的目的是提供一种有效的分析方法,能够对动态载荷下的流固系统进行建模,以计算固体上的流体动力。然后将结果应用到研究地震地震作用下的水下框架结构的行为。将在固体中在液体中振荡的流体动力确定为阻力和惯性力。当直径为10到20英尺的量级并且圆柱体经受动态运动时,对于圆柱形状,拖动力可以忽略不计,其频率和幅度在频率范围和地震幅度内地面运动。结果表明,在上述条件下不大可能发生气穴现象。为了研究由于固体加速而产生的流体动力,采用了拉格朗日有限元方法。开发了有效的有限元程序来对流体和固体区域进行建模。通过开发有限元程序,可以计算出由于流体中固体的小幅度振荡而产生的流体动力。结果表明,有限元分析的结果与其他分析方法吻合良好。结果表明,在这项研究中计算出的惯性力与所施加的运动频率无关,并且仅是加速度,流体密度和地震地震动频率范围内形状的函数。因此,周围的流体(水)可以被称为“附加质量”的附加质量代替。;计算了地震地震作用下浸没式框架结构的响应。通过将“增加的质量”叠加到框架结构的实际质量上来模拟浸水的效果。进行了两项分析;首先,通过有限元方法获得的附加质量进行分析,其次,通过“简化”方法获得的附加质量进行分析。对于本研究中分析的特定结构,发现使用“简化”方法的分力略高于使用有限元方法的分力。

著录项

  • 作者

    ABEDI, HASAN.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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