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Development of an extended thermo-hydraulic simulation tool for fusion magnet design study - Application to the initial versions of JT-60SA TF coils layout

机译:开发用于熔融磁体设计研究的扩展热工液压仿真工具-应用于JT-60SA TF线圈布局的初始版本

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摘要

In the framework of the EU participation to JT-60SA project [1], a dedicated simulation tool named after Thermo-hydraulic Extended Tool (TEXTO) was developed at CEA between 2006 and 2007 in order to address in a reliable way the calculation of the magnet conductor temperature increase and temperature margins in different operating conditions. The simulation process is based on three different codes, addressing each specific aspects (MCNP for the 3D nuclear heat calculation, TRAPS for magnetic field, ANSYS for 2D transverse thermal contribution of coil casing), which finally stand as input for the well established code GANDALF (with transient helium properties). Both steady-state operating and disruption transient regimes can be studied with this process and a first application is performed on the basis of the design and operating conditions available at this time on JT-60SA TF magnets, i.e. the first version of the different design stages. The complete analysis is shown together with the associated proposals for the TF conductor layout that could be derived from these studies.
机译:在欧盟参与的JT-60SA项目[1]的框架内,CEA在2006年至2007年间开发了一种以热工液压扩展工具(TEXTO)命名的专用仿真工具,目的是可靠地解决该问题。磁体导体在不同工作条件下的温度升高和温度裕度。仿真过程基于三个不同的代码,涉及每个特定方面(用于3D核热计算的MCNP,用于磁场的TRAPS,用于线圈壳体的二维横向热贡献的ANSYS),这些代码最终用作完善的代码GANDALF的输入(具有瞬时氦气特性)。可以使用此过程研究稳态工作状态和破坏瞬态状态,并根据此时可在JT-60SA TF磁体上使用的设计和工作条件进行首次应用,即不同设计阶段的第一个版本。显示了完整的分析以及相关的TF导体布局建议,这些建议可以从这些研究中得出。

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