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Electro-mechanical connection system for ITER in-vessel magnetic sensors

机译:用于ITER车载磁传感器的机电连接系统

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This paper presents the preliminary design of the "In-Vessel Magnetic platform", which is a subsystem of the magnetic diagnostics formed by all the components necessary for guaranteeing the thermomechanical interface of the actual magnetic sensors with the vacuum vessel (VV), their protection and the electrical connection to the in-vessel wiring for the transmission of the detected signal with a minimum level of noise. The design has been developed in order to comply with different functional requirements: the mechanical attachment to the VV; the electrical connection to the in-vessel wiring; efficient heat transfer to the VV; the compatibility with Remote Handling (RH) system for replacement; the integration of metrology features for post-installation control; the Electro Magnetic Interference (EMI) shielding from Electron Cyclotron Heating (ECH) stray radiation without compromising the sensor pass band (15 kHz). Significant effort has been dedicated to develop the CAD model, integrated within the ITER In-Vessel configuration model, taking care of the geometrical compliance with the Blanket modules (modified in order to accommodate the magnetic sensors in suitable grooves) and the RH compatibility. Thorough thermo-mechanical and electro-magnetic Finite Element Method (FEM) analyses have been performed to assess the reliability of the system in standard and off-normal operating conditions for the low frequency magnetic sensors. (C) 2016 Consorzio RFX. Published by Elsevier B.V. All rights reserved.
机译:本文介绍了“容器内磁性平台”的初步设计,该平台是磁性诊断的子系统,该子系统由保证实际磁性传感器与真空容器(VV)的热机械接口及其保护所需的所有组件组成以及与船内布线的电连接,用于以最小的噪声水平传输检测到的信号。开发该设计是为了符合不同的功能要求:VV的机械附件;与船内布线的电气连接;有效地将热量传递给VV;与用于替换的远程处理(RH)系统的兼容性;集成了用于后安装控制的计量功能;避免电子回旋加速器(ECH)杂散辐射的电磁干扰(EMI),而不会影响传感器的通带(15 kHz)。一直致力于开发集成在ITER船内配置模型中的CAD模型,同时要考虑与Blanket模块(为了在合适的凹槽中容纳磁传感器而进行修改)的几何一致性以及RH兼容性。进行了彻底的热机械和电磁有限元方法(FEM)分析,以评估低频磁传感器在标准和非正常工作条件下系统的可靠性。 (C)2016 Consorzio RFX。由Elsevier B.V.发布。保留所有权利。

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