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Seismic analyses of the double closure plate sub-plate for the ITER electron cyclotron upper launcher during the vacuum vessel baking scenario

机译:ITER电子回旋加速器上发射器双密封板子板在真空容器烘烤过程中的地震分析

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摘要

The Double Closure Plate Sub-Plate (DCPSP) was introduced in the Electron Cyclotron Upper Launcher (EC UL) design in order to minimize the openings exposing the interior of the Port Plug (PP) to the port cell; avoiding thus the near environment activation in case of maintenance or intervention on the In-Vessel (IV) components. The load combination Vacuum Vessel (VV) baking + Seismic level 2 is considered as one of the most relevant accidental events in terms of structural conformity affecting the DCPSP. The modal analysis of the DCPSP shows that the natural frequencies are far from the peaks of the ITER reference spectra at the PP flange. Therefore, the feasibility of analyzing the seismic event by using a static method, as a replacement of the Response Spectrum approach, is also investigated. Next, the results due to the seismic event are combined with those produced by loads on the DCPSP that occur during the VV baking scenario. The comparison of the categorized stresses and the allowable design limits showed that the mechanical integrity of the DCPSP is preserved during this load combination.
机译:电子回旋加速器上发射器(EC UL)设计中引入了双封闭板子板(DCPSP),以最大程度地减少将端口插头(PP)内部暴露在端口单元上的开口。从而避免在维护或干预船内(IV)组件的情况下激活附近环境。就影响DCPSP的结构一致性而言,真空容器(VV)烘烤+地震2级载荷组合被认为是最相关的意外事件之一。 DCPSP的模态分析表明,固有频率与PP法兰处的ITER参考光谱的峰值相距甚远。因此,还研究了使用静态方法代替响应谱法分析地震事件的可行性。接下来,将地震事件的结果与在VV烘焙场景期间发生在DCPSP上的负载所产生的结果相结合。对分类应力和容许设计极限的比较表明,在这种载荷组合过程中,DCPSP的机械完整性得以保留。

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