基于 TMSR-LF1 的研究堆厂房结构抗震分析方法保守性研究

IF 1.5 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Advances in Civil Engineering Pub Date : 2024-01-31 DOI:10.1155/2024/1672269
Rencong Dai, Wei Gong, Xiao Wang, Xiaoyan Wang, Decheng Cui
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摘要

研究堆厂房的抗震性能分析对于确保整个反应堆系统的安全至关重要。本文分析了中国科学院上海应用物理研究所 2WMt Thorium Molten Salt Reactor-Liquid Fuel 1(TMSR-LF1)的厂房结构在频发地震、设防地震和罕见地震作用下的抗震性能,并根据民规+1°的抗震设计方法,采用有限元软件 PKPM 进行了分析。在此基础上,比较了结构推移分析和弹塑性时间历程分析在罕遇地震作用下的地震反应,并系统分析了这两种常用弹塑性分析方法的保守性。结果表明,TMSR-LF1 工厂结构具有良好的承载能力和变形能力。它满足了 "小震不破坏"、"中震不发生不可修复的破坏 "和 "大震不倒塌(使用静力推移分析)"的抗震设计目标,且临界区完全在弹性范围内。此外,分析表明,弹塑性时间历程分析方法产生的地震响应明显高于 pushover 分析方法,这表明时间历程分析方法具有保守性。因此,建议使用弹塑性时间历程分析方法来评估研究堆厂房在罕见地震作用下的抗震性能。本文的研究为其他二类研究堆厂房的抗震性能分析提供了重要参考。
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Conservativeness Study on the Seismic Analysis Method for Research Reactor Plant Structure Based on TMSR-LF1
The seismic performance analysis of research reactor plants is crucial for ensuring the safety of the entire reactor system. This paper analyzes the plant structure seismic performance of the 2WMt Thorium Molten Salt Reactor-Liquid Fuel 1 (TMSR-LF1) at the Shanghai Institute of Applied Physics, Chinese Academy of Sciences under the action of frequent earthquakes, fortification earthquakes, and rare earthquakes was analyzed by finite element software PKPM based on the seismic design method of civil code +1°. On this basis, a comparison was made between the seismic responses of structural pushover analysis and elastoplastic time history analysis under the action of rare earthquakes, and the conservatism of these two commonly used methods for elastoplastic analysis was systematically analyzed. The results indicate that the TMSR-LF1 plant structure exhibits well bearing and deformation capacity. It meets the seismic design goal of “no damage under small earthquakes,” “no unrepairable damage under medium earthquakes,” and “no collapse under large earthquakes (using static pushover analysis),” and the critical regions are entirely within the elastic range. Furthermore, the analysis reveals that the elastoplastic time history analysis method produced a significantly higher seismic response than the pushover analysis method, which indicates the conservativeness of the time history method. Therefore, it is recommended to use the elastoplastic time history analysis method to evaluate the seismic performance of research reactor plants under rare earthquake actions. The research in this paper provides important references for the seismic performance analysis of other Class II research reactor plants.
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来源期刊
Advances in Civil Engineering
Advances in Civil Engineering Engineering-Civil and Structural Engineering
CiteScore
4.00
自引率
5.60%
发文量
612
审稿时长
15 weeks
期刊介绍: Advances in Civil Engineering publishes papers in all areas of civil engineering. The journal welcomes submissions across a range of disciplines, and publishes both theoretical and practical studies. Contributions from academia and from industry are equally encouraged. Subject areas include (but are by no means limited to): -Structural mechanics and engineering- Structural design and construction management- Structural analysis and computational mechanics- Construction technology and implementation- Construction materials design and engineering- Highway and transport engineering- Bridge and tunnel engineering- Municipal and urban engineering- Coastal, harbour and offshore engineering-- Geotechnical and earthquake engineering Engineering for water, waste, energy, and environmental applications- Hydraulic engineering and fluid mechanics- Surveying, monitoring, and control systems in construction- Health and safety in a civil engineering setting. Advances in Civil Engineering also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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