首页> 外文期刊>IEEE Transactions on Plasma Science >Modeling Technique to Predict Fields, Currents, and Loads for C-Mod's Advanced Outer Divertor During a Disruption With a 2.5-MA Plasma Current and 9-T Toroidal Field
【24h】

Modeling Technique to Predict Fields, Currents, and Loads for C-Mod's Advanced Outer Divertor During a Disruption With a 2.5-MA Plasma Current and 9-T Toroidal Field

机译:建模技术来预测C-Mod的高级外部分流器在2.5MA等离子体电流和9-T环形磁场干扰期间的场,电流和负载

获取原文
获取原文并翻译 | 示例

摘要

Models have been built using the finite-element software COMSOL to predict fields, currents, and the resulting loads and stresses acting on the C-mod advanced outer divertor (AOD). The AOD is being designed to operate with conditions of a 2.5-MA plasma current and a toroidal field of 9 T while being held at 600$^{circ}{rm C}$, and so must survive a disruption that occurs in these conditions. In addition to the loads resulting from eddy currents induced in the divertor during a disruption, the divertor will at times need to carry up to 400 kA of halo current, which crosses the toroidal field as it returns to the plasma. The loads resulting from this scenario will be very high, and we have had to develop models to predict the fields, currents, and loads as accurately as possible to ensure that the strength of the new design can withstand these loads. First, the fields and eddy currents are predicted in a COMSOL model of C-mod given two inputs. The first input is the currents for the toroidal and poloidal field coils, which come from measured data taken during a discharge. The second input is the current in the plasma, which comes from another model that solves Maxwell's equations to reconstruct the plasma as 24 current carrying filaments. The advantage of this new modeling technique is that it provides the ability to create a model based on actual measured data and to model whichever type of disruption, whether a midplane disruption or a vertical displacement event, so that the model more accurately reflects operating conditions the AOD will see. In addition to the Lorenz forces due to the induced eddy currents in the AOD, the model can also calculate the large forces due to halo currents that cross C-mod's large toroidal field. The loads due to the halo currents will be the largest loads the divertor sees. With all the loads defined, a structural model of the divertor is run to determine stresses - nd displacements.
机译:已经使用有限元软件COMSOL建立了模型,以预测磁场,电流以及作用在C-mod高级外部偏滤器(AOD)上的所得载荷和应力。 AOD被设计为在2.5MA等离子体电流和9T环形磁场的条件下工作,同时保持在600 $ ^ {circ} {rm C} $,因此必须在这些条件下发生的干扰下生存。除了由于扰动期间在偏滤器中感应出的涡流而产生的负载外,偏滤器有时还需要携带高达400 kA的光晕电流,该光晕在返回等离子体时会穿过环形磁场。这种情况下产生的负载将非常高,我们必须开发模型来尽可能准确地预测磁场,电流和负载,以确保新设计的强度能够承受这些负载。首先,在给定两个输入的情况下,在C-mod的COMSOL模型中预测磁场和涡流。第一个输入是环形和多极场线圈的电流,这些电流来自放电期间获取的测量数据。第二个输入是等离子体中的电流,该电流来自另一个模型,该模型求解麦克斯韦方程,将等离子体重构为24个载流灯丝。这种新的建模技术的优势在于,它能够基于实际测量数据创建模型,并能够对任何类型的破坏(无论是中平面破坏还是垂直位移事件)进行建模,从而使模型更准确地反映操作条件。 AOD将会看到。除了由于AOD中感应出的涡流而产生的洛伦兹力之外,该模型还可以计算由于穿越C-mod的大环形场的晕电流而产生的大力。由光晕电流引起的负载将是分流器看到的最大负载。在定义了所有载荷的情况下,运行偏滤器的结构模型以确定应力和位移。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号