土壤类型对钢筋混凝土工业烟囱动力性能的影响

Muhammet Sari, E. Yilmaz, A. Altunışık
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引用次数: 0

摘要

随着工业的发展和能源需求的增加,采用不同材料和方法建造的工业结构在该领域发挥着重要作用。工业结构在设计和应用阶段考虑了许多参数,以提供多年的服务。本研究的目的是研究钢筋混凝土工业烟囱的动力行为取决于土-结构相互作用(SSI)。因此,我们选择了一个在1999年Kocaeli地震中暴露的钢筋混凝土工业烟囱作为样本。采用ANSYS有限元软件进行线性时程分析,数值研究了不同性质的土体(硬、中、软)对所选结构动力性能的影响。利用1999年Kocaeli地震的水平分量进行分析。研究结果表明,除了结构的模态振型和频率外,还得到了结构的应力、应变和位移。观察到,随着土壤环境硬度的降低(由硬土向软土过渡),烟囱顶的位移和孔洞边缘的应力增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Soil Type on Dynamic Behavior of Reinforced Concrete Industry Chimneys
Industrial structures built with different materials and methods play an important role in the sector with development of industry and increase in energy need. Many parameters are considered in the design and application phase of industrial structures to provide service for many years. The aim of this study is to examine dynamic behavior of reinforced concrete industrial chimneys depending on soil-structure interaction (SSI). For this reason, a reinforced concrete industrial chimney, which was exposed to the 1999 Kocaeli Earthquake, was chosen as a sample. The effect of soils with different properties (hard, medium and soft) on the dynamic behavior of the selected structure was investigated numerically by linear time history analysis in ANSYS finite element program. The horizontal component of the Kocaeli Earthquake (1999) was used in analyses. As a result of the studies, besides the mode shape and frequency of structure, stress, strain and displacements were also obtained. It has been observed that as the hardness of the soil environment decreases (transition from hard soil to soft soil), chimney apex displacements and stresses on the edge of the voids increase.
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