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The numerical and empirical evaluation of chimneys considering soil structure interaction and high-temperature effects

机译:考虑土壤结构相互作用和高温效应的烟囱的数值和经验评估

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摘要

During the past strong ground motions, chimneys constructed according to international standards are representative of similar structures at industrial areas throughout the world, including those collapsed or moderately damaged in earthquake-prone regions. This is due to the specialty of structural characteristics and the special loads acting on the structure such as earthquakes, wind and differences in the level of temperature, etc. In this context, the researchers and designers should focus on the dynamic behavior of chimneys especially under high temperature and seismic effects. For this purpose, the main focus of this study is to evaluate the dynamic response of a chimney under the above-mentioned effects considering soil-structure interaction (SSI). A 52 m steel chimney in Yesilyurt township of Samsun City in Turkey was studied. The in-situ model testing and numerical models were compared. Before the commissioning of the chimney, a series of tests was realized to define its dynamic characteristics in case of no-heat and after the fabric got to work, the same tests were repeated for the same sensor locations to understand the heat effect on the dynamic response of the chimney. The ambient vibration tests are proven to be fast and practical procedures to identify the dynamic characteristics of those structures. The dynamic testing of the towers promises a widespread use, as the identification of seismic vulnerability of such structures becomes increasingly important. The data presented in this study are considered to be useful for the researchers and engineers, for whom the temperature and SSI effects on steel chimneys are a concern. Using the modal analysis techniques, presented finite element simulation for the soil/pile foundation-chimney interaction system is verified. The results of modal analyses using numerical solutions are shown to have acceptable accuracy compared with results obtained by in-situ test. The present study also aims to provide designers with material examples about the influence of these on the seismic performance of steel chimneys by means of reflecting the changes in the dynamic behavior. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在过去的强烈地面运动中,根据国际标准构造的烟囱代表着世界各地工业区的类似结构,包括在地震多发地区倒塌或受到中等破坏的结构。这是由于结构特征的特殊性和作用在结构上的特殊载荷,例如地震,风和温度水平的差异等。在这种情况下,研究人员和设计人员应着重研究烟囱的动态行为,尤其是在烟囱下高温和地震影响。为此,本研究的主要重点是在考虑土壤-结构相互作用(SSI)的情况下,评估烟囱在上述作用下的动力响应。研究了土耳其Samsun市Yesilyurt镇的52 m钢烟囱。比较了原位模型测试和数值模型。在烟囱投入使用之前,已进行了一系列测试以定义无热情况下的动态特性,在织物开始工作后,对相同的传感器位置重复进行了相同的测试,以了解热对动态的影响。烟囱的反应。实践证明,环境振动测试是识别这些结构的动态特性的快速实用的程序。塔的动态测试有望得到广泛应用,因为识别此类结构的地震脆弱性变得越来越重要。这项研究中提供的数据被认为对于研究人员和工程师很有用,因为温度和SSI对钢烟囱的影响值得关注。利用模态分析技术,验证了提出的土-桩基础-烟囱相互作用系统的有限元模拟。与通过原位测试获得的结果相比,使用数值解的模态分析结果显示具有可接受的准确性。本研究还旨在通过反映动态行为的变化,为设计者提供有关这些实例对钢烟囱抗震性能影响的材料实例。 (C)2014 Elsevier Ltd.保留所有权利。

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