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Development of modelling tools for thermo-hydraulic analyses and design of JT-60SATF coils

机译:JT-60SATF线圈热工分析建模工具的开发和设计

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In the framework of the JT-60SA project, the Toroidal Field (TF) coils design has required to address reliably the choice between multiple design options and to calculate the temperature margin criterion for the superconductor. For this purpose, a tool was developed in two stages, interfacing the ANSYS code, used to model the thermal diffusion between the casing and the winding pack, with the GANDALF code which solves the 1D thermo-hydraulics inside each conductor. The first version of this Thermo-hydraulic Extended TOol (TEXTO) was developed for producing conservative results and has allowed to simulate the fast discharge of the magnet, providing valuable results such as the mass flow expelled from each pancake. In the second stage, the ANSYS code was configured for modelling the helium transport in the casing and in the winding pack, thus computing more realistic transverse heat fluxes to be injected into the GANDALF code for an accurate calculation of the temperature margin. This second version of TEXTO, which integrates the TACOS (Thermo-hydraulic Ansys computation Semi 3D) module, has been used for studying the feasibility of positioning the helium inlets in the electrical connections. The temperature margin has then been found close but below the criterion of 1 K.
机译:在JT-60SA项目的框架中,环形场(TF)线圈设计需要可靠地解决多个设计选项之间的选择问题,并计算超导体的温度裕量标准。为此,开发了一种工具,分两个阶段进行,即连接ANSYS代码,用于模拟外壳和绕组组件之间的热扩散,并使用GANDALF代码来求解每个导体内部的一维热工液压。开发此热液扩展工具(TEXTO)的第一个版本是为了产生保守的结果,并允许模拟磁体的快速放电,从而提供有价值的结果,例如从每个煎饼中排出的质量流量。在第二阶段中,配置了ANSYS代码以对氦气在壳体和绕组包中的传输进行建模,从而计算出更实际的横向热通量,以将其注入GANDALF代码中,以精确计算温度裕度。 TEXTO的第二个版本集成了TACOS(Thermo-hydraulic Ansys计算Semi 3D)模块,已用于研究在电气连接中放置氦气入口的可行性。然后发现温度裕度接近但低于1 K的标准。

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