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The Damaging Effects of Earthquake Excitation on Concrete Cooling Towers

机译:地震激发对混凝土冷却塔的破坏性影响

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Reinforced concrete cooling towers of hyperbolic shell configuration find widespread application in utilities engaged in the production of electric power. In design of critical civil infrastructure of this type, it is imperative to consider all the possible loading conditions that the cooling tower may experience, an important loading condition in many countries is that of the earthquake excitation, whose influence on the integrity and stability of cooling towers is profound. Previous researches have shown that the columns supporting a cooling tower are sensitive to earthquake forces, as they are heavily loaded elements that do not possess high ductility, and understanding the behavior of columns under earthquake excitation is vital in structural design because they provide the load path for the self weight of the tower shell. This paper presents the results of a finite element investigation of a representative “dry” cooling tower, using realistic horizontal and vertical acceleration data obtained from the recent and widely-reported Tabas, Naghan and Bam earthquakes in Iran. The results of both linear and nonlinear analyses are reported in the paper, the locations of plastic hinges within the supporting columns are identified and the ramifications of the plastic hinges on the stability of the cooling tower are assessed. It is concluded that for the (typical) cooling tower configuration analyzed, the columns that are instrumental in providing a load path are influenced greatly by earthquake loading, and for the earthquake data used in this study the representative cooling tower would be rendered unstable and would collapse under the earthquake forces considered.
机译:双曲线外壳配置的钢筋混凝土冷却塔在公用事业中占据了从事电力生产的公用事业的广泛应用。在设计这种类型的关键民用基础设施方面,必须考虑冷却塔可能经历的所有可能的装载条件,许多国家的重要装载条件是地震激励的影响,其对冷却的完整性和稳定性的影响塔很深。以前的研究表明,支撑冷却塔的柱对地震力敏感,因为它们是具有高延展性的严重装载元件,并且了解地震激励下柱的行为在结构设计中至关重要,因为它们提供负载路径对于塔壳的自重。本文介绍了代表性“干燥”冷却塔的有限元调查的结果,使用从最近和广泛报告的Tabas,Naghan和伊朗地震获得的现实水平和垂直加速数据。本文报道了线性和非线性分析的结果,鉴定了支撑柱内的塑料铰链的位置,并评估了塑料铰链对冷却塔的稳定性的影响。得出结论是,对于(典型的)冷却塔配置分析,通过地震载荷提供了仪器提供负载路径的柱子,并且对于本研究中使用的地震数据来影响代表性的冷却塔将不稳定并将呈现不稳定考虑过地震部队下的崩溃。

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