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Design verification of the gyrotron diamond output window for the upgrade of the ECRH system at W7-X

机译:陀螺钻石输出窗口的设计验证,以便在W7-X升级ECRH系统升级

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摘要

The 10 MW electron cyclotron resonance heating (ECRH) system at the stellarator Wendelstein 7-X (W7-X) currently relies on the successful operation of continuous wave (CW) 1 MW, 140 GHz gyrotrons which have chemical vapor deposition (CVD) diamond output windows cooled by the industrial silicon oil Dow Corning 200 (R) 5 cSt. The window features a 1.8 mm thick diamond disk brazed to two copper cuffs with an aperture of 88 mm, which are then integrated in a steel housing. In the context of the upgrade of the ECRH system towards higher microwave power, this gyrotron design has been significantly advanced to fulfill the requirement of 1.5 MW CW operation, still at 140 GHz. A prototype of this new gyrotron is under development at Thales, France. This paper reports the computational fluid dynamics (CFD) conjugated heat transfer and structural analyses of the diamond window performed using the commercial code ANSYS V19.2 to investigate its performance at 1.5 MW operation. Furthermore, sensitivity studies were also carried out with respect to the absorbed power in the disk and the mm-wave beam radius at the window location. These analyses showed that the window design of the existing 1 MW gyrotrons still works quite well at higher power operation, thus verifying the performance of the window. Even in the worst case scenario of 1.5 kW absorbed power, the maximum temperature of 215 degrees C at the disk center can be safely accepted, being below the conservative limit of 250 degrees C for CVD diamond. In addition, the non-axial symmetric thermal gradients due to the geometry of the cooling channels lead to thermal stresses in the disk and the cuffs. However, they are much lower than the limits. The copper cuffs experience plasticity deformation in the region of the interface with the diamond disk up to a value of about 1.5 mm.
机译:螺栓恒温斯坦7-X(W7-X)的10 MW电子回旋共振加热(ECRH)系统目前依赖于连续波(CW)1 MW,140GHz陀螺仪的成功操作,该蒸气沉积(CVD)金刚石输出窗口由工业硅油道康宁200(R)5 CST冷却。窗户具有1.8毫米厚的金刚石盘,钎焊到两个带有88毫米的孔的铜袖口,然后将其集成在钢壳体中。在ECRH系统升级到更高的微波功率的背景下,这种陀螺设计已被显着提升,以满足1.5 MW CW操作的要求,仍处于140 GHz。这个新的陀螺泡的原型是在法国塔尔斯的开发中开发。本文报道了使用商业代码ANSYS V19.2进行的钻石窗口的计算流体动力学(CFD)共轭传热和结构分析,以研究其在1.5 MW运行时的性能。此外,还对窗口位置的盘和MM波束半径的吸收功率也进行了灵敏度研究。这些分析表明,现有的1 MW陀螺仪的窗口设计在更高的功率运行中仍然非常好,从而验证窗口的性能。即使在1.5千瓦的最坏情况下,也可以安全地接受磁盘中心215摄氏度的最高温度,低于CVD金刚石的250摄氏度的保守限制。另外,由于冷却通道的几何形状导致的非轴对称热梯度导致盘和袖口中的热应力。但是,它们远低于限制。铜袖口在界面区域体验着钻石盘的可塑性变形,高达1.5毫米的值。

著录项

  • 来源
    《Fusion Engineering and Design》 |2021年第4期|112262.1-112262.5|共5页
  • 作者单位

    Karlsruhe Inst Technol KIT IAM D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol KIT IHM D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol KIT IHM D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol KIT IHM D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol KIT IHM D-76344 Eggenstein Leopoldshafen Germany;

    Max Planck Inst Plasma Phys IPP D-17491 Greifswald Germany;

    Karlsruhe Inst Technol KIT IAM D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol KIT IAM D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol KIT IAM D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol KIT IHM D-76344 Eggenstein Leopoldshafen Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stellarator Wendelstein 7-X; ECRH system; Gyrotron diamond output window; CFD analyses; FEM analyses; Silicon oil Dow Corning 200(R) 5cSt;

    机译:螺旋液Wendelstein 7-X;ECRH系统;陀螺钻石输出窗口;CFD分析;有限元分析;硅油道康宁200(R)5CST;

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