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ITER diagnostic port plug engineering design analysis in the EU

机译:欧盟ITER诊断端口插头工程设计分析

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Engineering analysis has been carried out on a representative equatorial diagnostic port plug of ITER, outcome of which is given here. A preliminary overview of the work for a prototypical diagnostic upper port plug is also reported.rnTo ensure that the port plug structure satisfies the requirements of the ITER environment, the following analyses have been performed: finite element (FE) analyses of static and dynamic behaviour under electromagnetic loads, FE vibration analysis, FE thermal-structural analysis and nuclear heating and radiation dose studies.rnThe main outcomes from these analyses and consequent design developments are a revision of the stainless steel/water ratio in the plug neutron shielding modules and the incorporation of improved neutron shielding of the port duct, a modification of the port plug top plate arrangement, to increase torsional stiffness of the structure under disruption loads, and improved solutions for cooling arrangements. Manufacturing studies have also been performed, involving the assessment of methods for the production of plug flanges, the analysis of welding techniques for parts assembly and methods for the introduction of cooling features in plug components. Reference design solutions and possible modifications will be presented and discussed.
机译:对ITER的代表性赤道诊断端口插头进行了工程分析,其结果在此处给出。还报告了原型诊断上部端口插头的工作的初步概述。为了确保端口插头结构满足ITER环境的要求,已执行以下分析:静态和动态行为的有限元(FE)分析在电磁载荷下进行有限元振动分析,有限元热结构分析以及核加热和辐射剂量研究。rn这些分析的主要成果以及随后的设计开发是对插塞式中子屏蔽模块中的不锈钢/水比进行了修正,并纳入了改进端口导管的中子屏蔽,更改端口插头顶板布置,以增加结构在破坏载荷下的扭转刚度,以及改进的冷却布置方案。还进行了制造研究,包括评估塞法兰的生产方法,分析零件装配的焊接技术以及在塞部件中引入冷却功能的方法。将介绍和讨论参考设计解决方案和可能的修改。

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