Regulation of the Natural Oscillations Parameters of a Building Spatial Frame in the LIRA Software

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Abstract

Introduction. In recent years many researchers have become interested in applying the various types of finite element method to studying of the buildings oscillation problems. In recent decades the finite element method is being successfully used for natural oscillations analysis along with the physical modeling. The scaled physical modeling and experimental approaches are also suitable for solving the complex problems. The main aim of our research is to identify the dependence of dynamic characteristics of a building frame on geometric characteristics of the frame elements. The objective of this research is to make an analysis and overview of the topic, to determine the scientific deficit, to conduct numerical and experimental studies, to formulate conclusions, to model and analyse the results. The scientific novelty consists in the possibility to use the obtained data on building frame natural oscillations depending on the geometric characteristics of the frame elements as an optimal rigidness ratio. The practical significance of the research consists in development of specific analytical relations for choosing a building frame design solution with an optimal natural frequencies parameter to be used in design and construction practice.Materials and methods. The creation and calculation of the finite element model was carried out in the LIRA software package.Results. As a result of calculation the frequencies and periods of building frame natural oscillations were obtained.Discussion and conclusions. Based on the results of the building natural oscillations analysis the conclusion was made that by changing the frame elements rigidity it’s possible to select its dynamic characteristics to find the optimal design solution of structures.
LIRA软件对建筑空间框架自振参数的调节
介绍。近年来,越来越多的研究人员将各种类型的有限元方法应用于建筑物振动问题的研究。近几十年来,有限元法已成功地应用于自然振动分析和物理建模。比例物理建模和实验方法也适用于解决复杂问题。我们研究的主要目的是确定建筑框架的动力特性对框架元素几何特性的依赖关系。本研究的目的是对课题进行分析和概述,确定科学缺陷,进行数值和实验研究,得出结论,对结果进行建模和分析。科学的新颖性在于,根据框架元素的几何特性,可以使用所获得的建筑框架自然振荡数据作为最佳刚度比。本研究的实际意义在于,为选择具有最优固有频率参数的建筑框架设计方案提供了具体的分析关系,以供设计和施工实践使用。材料和方法。在LIRA软件包中进行了有限元模型的建立和计算。通过计算得到了建筑框架固有振动的频率和周期。讨论和结论。根据建筑物的自振分析结果,通过改变框架单元的刚度,可以选择其动力特性,从而找到结构的最优设计方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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