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CFETR integration design platform: Development of space analysis module

机译:CFETR集成设计平台:空间分析模块的开发

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Space allocation is important in the design of a fusion reactor, where numerous components operate under complex conditions, including a strong magnetic field, high-energy neutron irradiation, and a wide temperature range (4.5 K at the magnet and similar to 300-500 degrees C at the blanket). To ensure the consistency of the China Fusion Engineering Test Reactor (CFETR) design, multi-component interference checks and distance measurements must be routinely performed. In this paper, a space analysis module is developed on the CFETR Integration Design Platform to provide the space analysis function for both rigid and deformed components (using the Representative-Triangles method). The example of the space allocation of a vacuum vessel (VV) and a thermal shield (TS) is demonstrated. The deformation due to heating under the bake-out condition is considered (during operation, heating and swelling due to radiation also cause deformation). With the input from the component design module, the space analysis can be well-performed for both rigid models and thermal deformation results (under the simplified boundary condition). Through iteration between the component design modules and the space analysis module, a preliminary designed clearance of 40 mm between the VV and TS is insufficient owing to the deformation during bake out, and the optimized clearance increases by a factor of two.
机译:空间分配在聚变反应堆的设计中很重要,在聚变反应堆中,许多组件都在复杂的条件下运行,包括强磁场,高能中子辐照和宽温度范围(磁体处为4.5 K,类似于300-500度C在毯子上)。为确保中国聚变工程试验堆(CFETR)设计的一致性,必须例行执行多组分干扰检查和距离测量。在本文中,在CFETR集成设计平台上开发了空间分析模块,以为刚性和变形组件提供空间分析功能(使用“代表三角”方法)。以真空容器(VV)和隔热罩(TS)的空间分配为例进行说明。考虑在烘烤条件下由于加热而引起的变形(在操作过程中,由于辐射引起的加热和膨胀也会引起变形)。利用组件设计模块的输入,可以对刚性模型和热变形结果(在简化的边界条件下)进行良好的空间分析。通过组件设计模块和空间分析模块之间的迭代,由于烘烤过程中的变形,VV和TS之间的40 mm初步设计间隙不足,并且优化间隙增加了两倍。

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