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An Electromagnetic and Structural Finite Element Model of the ITER Toroidal Field Coils

机译:ITER环形线圈的电磁结构有限元模型

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The ITER magnet system consists of 18 toroidal field (TF) coils, a central solenoid (CS), six poloidal field (PF) coils, and a set of 18 correction coils. The TF coils provide the required toroidal magnetic field of ≈5.3 T at the plasma radius R = 6.2 m mainly needed to confine the plasma. Since the magnets are under manufacturing, nonconformity-reports (NCR) and/or deviation requests (DR) can be provided by the manufacturers. Fast checks on the impact of those design updates on the structural behavior of the system are needed before accepting their implementation. With this aim a detailed finite element model of the TF system has been developed representing two TF coils and is described in this paper. It is a three-dimensional cyclic symmetric finite element model giving a representation of the two types of coils characterizing the TF magnet: one TF coil type A (the one that supports the six PF coils) and one TF coil type B (the one that supports four out of six PF coils and the CS). The model allows computing the magnetic field during the different operating scenario of the magnet and the related Lorentz forces acting on the TF coil system. It also permits to simulate how the TF system will mechanically behave during operation. Updates of the FE mesh can be easily implemented since the model has been built in a modular way, small subcomponents of the system can be isolated and geometrically updated if needed. This is the key feature of the model, which has allowed to study in a very fast way possible NCR's and DR's produced during the manufacturing. An intensive usage of the ANSYS APDL language has been implemented in such a way that the entire analysis cascade can be executed in a completely automatic way. Due to its versatility, this tool has become the reference TF coils model in the ITER Magnet Division.
机译:ITER磁体系统由18个环形场(TF)线圈,一个中央螺线管(CS),六个极向场(PF)线圈和一组18个校正线圈组成。 TF线圈在等离子半径R = 6.2 m时提供约5.3 T的所需环形磁场,这主要是为了限制等离子。由于磁体正在制造中,因此制造商可以提供不合格报告(NCR)和/或偏差要求(DR)。在接受设计更新之前,需要对这些设计更新对系统结构行为的影响进行快速检查。为了这个目的,已经开发了代表两个TF线圈的TF系统的详细有限元模型,并在本文中进行了描述。它是一个三维循环对称有限元模型,代表了表征TF磁体的两种类型的线圈:一种类型的TF线圈(支持六个PF线圈)和一种类型的TF线圈(一种用于TF线圈)。支持六个PF线圈中的四个和CS)。该模型允许计算磁体在不同运行情况下的磁场以及作用在TF线圈系统上的相关洛伦兹力。它还允许模拟TF系统在运行过程中的机械性能。由于模型是通过模块化方式构建的,因此可以轻松实现FE网格的更新,可以隔离系统的小子组件,并根据需要进行几何更新。这是模型的关键特征,它允许以非常快的方式研究制造过程中可能生产的NCR和DR。 ANSYS APDL语言的大量使用已经实现,可以完全自动化地执行整个分析级联。由于其多功能性,该工具已成为ITER磁铁部门的参考TF线圈模型。

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