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首页> 外文期刊>Fusion Engineering and Design >Analysis of test blanket module attachments under electromagnetic loads by using a dynamic amplification factor envelope
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Analysis of test blanket module attachments under electromagnetic loads by using a dynamic amplification factor envelope

机译:使用动态放大系数包络线分析电磁负载下的测试毯模块附件

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摘要

European test blanket modules (TBMs) are attached to radiation shields through mechanical joints. The structural integrity of the joints must be ensured under non-periodic dynamic loading caused by accidental electromagnetic events. This requires the transient dynamic analysis of the TBM-Joint-Shield under multiple loading scenarios. As temperatures and dynamic characteristics of the TBM-Joint-Shield system are updated under the course of the ITER project, the design process of the joints can become very time-consuming. This work presents a methodology based on a response spectrum to simplify the design process of the joint under electromagnetic loads. The mechanical system TBM-Joint-Shield was modeled as a single degree of freedom lumped spring-mass-dashpot system. The dynamic amplification was determined for a wide range of frequencies using the Finite Element Method. Eventually, a design envelope for each loading category was obtained, which can be readily used for determining the dynamic amplification factor of any potential new design of the TBM + Joint + Shield system. Results showed that helium cooled lithium lead (HCLL) undergoes higher loads than helium cooled pebble bed (HCPB), resulting in a dynamic amplification factor which varies from 1.25 to 2.0 for a damping of 4%.
机译:欧洲测试毯模块(TBM)通过机械接头连接到辐射屏蔽层。在意外电磁事件引起的非周期性动态载荷下,必须确保接头的结构完整性。这需要在多种载荷情况下对TBM-Joint-Shield进行瞬态动态分析。在ITER项目的过程中,随着TBM-Joint-Shield系统的温度和动态特性的更新,接头的设计过程将变得非常耗时。这项工作提出了一种基于响应谱的方法,以简化电磁负载下接头的设计过程。机械系统TBM-Joint-Shield被建模为单自由度集总弹簧-质量-阻尼系统。使用有限元方法在很大的频率范围内确定了动态放大。最终,获得了每种载荷类别的设计包络,可以很容易地用于确定TBM ++ Joint ++ Shield系统的任何潜在新设计的动态放大系数。结果表明,氦冷却的锂铅(HCLL)承受的负载比氦冷却的卵石床(HCPB)高,动态阻尼系数在1.25到2.0之间变化,阻尼率为4%。

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