首页> 外文会议>International conference on nuclear engineering;ASME power conference >IN VESSEL LOSS OF COOLANT ACCIDENT ANALYSIS FOR THE JET TOKAMAK IN SUPPORT OF THE SAFETY CASE REVIEW
【24h】

IN VESSEL LOSS OF COOLANT ACCIDENT ANALYSIS FOR THE JET TOKAMAK IN SUPPORT OF THE SAFETY CASE REVIEW

机译:支持安全案例审查的喷气托卡马克冷却液事故分析

获取原文

摘要

The Joint European Torus is currently the largest operating tokamak in the world. JET was established with a long-term objective to contribute to the creation of safe, environmentally sound prototype fusion reactors. To meet this objective, JET operates using deuterium as a fuel but also in D-T mode where the fusion reaction is fuelled by deuterium and tritium. To justify the safety of D-T experiments, safety reports have been produced at stages to obtain approval for the past experimental campaigns. The Safety Case is currently under review in preparation of the next tritium campaign in 2014/ 2015. In this prospect, the hazard assessments have been reviewed and when possible, the calculations in support of these assessments have been updated. For the in vessel loss of coolant accident, the state of the art CEA developed thermal hydraulics code CATHARE 2 V2.52, has been adapted down to pressure relevant to fusion applications. The complexity of the heat transfer mechanisms involved in the vacuum vessel has been' represented with different elements available in the code to improve the 0D model. Modeling parameters have been studied and any compromise in modeling was done by increasing conservatism of the peak pressure in the VV. Some physical parametric studies have also been run especially on the failure of safety equipment designed to minimize the in vessel consequences on the LOCA. One major result of the analysis is that the initial calculations were conservative in their assumptions and that some break size initially considered as beyond design could lead to pressure peak in the vessel which could be limited by the safety systems below the bursting disk pressure.
机译:欧洲联合圆环目前是世界上最大的运营托卡马克。建立JET的长期目标是为创建安全,无害环境的原型聚变反应堆做出贡献。为了实现此目标,JET使用氘作为燃料,但也以D-T模式运行,在该模式下,氘和tri为聚变反应提供了燃料。为了证明D-T实验的安全性,已经分阶段制作了安全报告,以获取过去实验活动的批准。目前正在审查安全案例,以准备2014/2015年的下一个tri运动。在这种情况下,对危害评估进行了审查,并在可能的情况下,更新了支持这些评估的计算方法。对于船上因冷却剂流失而造成的事故,CEA开发的最新技术水平的液压液压代码CATHARE 2 V2.52已被调低至与聚变应用相关的压力。真空容器中涉及的传热机制的复杂性已通过代码中可用的不同元素来表示,以改善0D模型。已经研究了建模参数,并且通过增加VV中峰值压力的保守性来完成建模中的任何折衷。还进行了一些物理参数研究,特别是关于旨在最小化船上对LOCA的影响的安全设备的故障。分析的一个主要结果是,初始计算在其假设中是保守的,最初认为超出设计范围的某些破口尺寸可能会导致容器中的压力峰值,而该峰值可能会受到安全系统限制在爆破盘压力以下。

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