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Innovative design for FAST divertor compatible with remote handling, electromagnetic and mechanical analyses

机译:FAST偏滤器的创新设计,兼容远程操作,电磁和机械分析

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Divertor is a crucial component in Tokamaks, aiming to exhaust the heat power and particles fluxes coming from the plasma during discharges. This paper focuses on the optimization process of FAST divertor, aimed at achieving required thermo-mechanical capabilities and the remote handling (RH) compatibility. Divertor RH system final layout has been chosen between different concept solutions proposed and analyzed within the principles of Theory of Inventive Problem Solving (TRIZ). The design was aided by kinematic simulations performed using Digital Mock-Up capabilities of Catia software. Considerable electromagnetic (EM) analysis efforts and top-down CAD approach enabled the design of a final and consistent concept, starting from a very first dimensioning for EM loads.
机译:转向器是托卡马克(Tokamaks)中的重要组成部分,其目的是在放电过程中耗尽热能和来自等离子体的颗粒通量。本文着重于FAST偏滤器的优化过程,旨在实现所需的热机械功能和远程处理(RH)兼容性。 Divertor RH系统的最终布局已在创造性问题解决理论(TRIZ)的原理中提出和分析的不同概念解决方案之间进行了选择。使用Catia软件的Digital Mock-Up功能进行的运动学仿真辅助了该设计。大量的电磁(EM)分析工作和自上而下的CAD方法使设计最终和一致的概念成为可能,从最初为EM负载确定尺寸开始。

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