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Structural analysis of the CAREM-25 nuclear power plant subjected to the design basis accident and seismic loads

机译:设计基准事故和地震荷载作用下CAREM-25核电站的结构分析

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In this paper, a numerical study about the structural response of the Argentine nuclear power plant CAREM-25 subjected to the design basis accident (DBA) and seismic loads is presented. Taking into account the hardware capabilities available, a full 3D finite element model was adopted. A significant part of the building was modeled using more than 2 M solid elements. In order to take into account the foundation flexibility, linear springs were used. The springs and the model were calibrated against a greater model used to study the soil-structure interaction. The structure was subjected to the DBA and seismic loads as combinations defined by ASME international code. First, a transient thermal analysis was performed with the conditions defined by DBA and evaluating the time history of the temperature of the model, each 1 h until 36 h. The final results of this stage were considered as initial conditions of a static structural analysis including the pressure defined by DBA. Finally, an equivalent static analysis was performed to analyze the seismic response considering the design basis spectra for the site. The different loads were combined and the abnormal/extreme environmental combination was the most unfavorable for the structure, defining the design. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文对阿根廷核电厂CAREM-25在设计基准事故(DBA)和地震荷载作用下的结构响应进行了数值研究。考虑到可用的硬件功能,采用了完整的3D有限元模型。该建筑物的重要部分使用了超过2 M的实体元素进行建模。为了考虑基础的灵活性,使用了线性弹簧。弹簧和模型针对用于研究土壤与结构相互作用的更大模型进行了校准。该结构承受了ASME国际规范定义的组合的DBA和地震荷载。首先,在DBA定义的条件下进行瞬态热分析,并评估模型温度的时间历程,每1h至36h。该阶段的最终结果被视为包括DBA定义的压力在内的静态结构分析的初始条件。最后,进行了等效静力分析,以考虑场地的设计基准谱来分析地震响应。组合了不同的载荷,异常/极端的环境组合最不利于结构,从而确定了设计。 (C)2017 Elsevier Ltd.保留所有权利。

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