首页> 外文会议>Symposium on Fusion Engineering >Tritium extraction system pipe break environmental impact by atmospheric modelling of tritium forms transport
【24h】

Tritium extraction system pipe break environmental impact by atmospheric modelling of tritium forms transport

机译:atmospheric提取系统管道通过atmospheric形式运输的大气模拟打破了环境影响

获取原文

摘要

In the case of a Tritium-Extraction-System (TES) pipe break (with critical failure of a fuelling line), the tritium source term has not yet been determined in the frame of European Test Blanket Systems, as Design Basis Accident (DBA) but it is expected to be in the order of a few grams. In this critical scenario acute modeling of environmental tritium transport forms (HT and HTO) for the assessment of fusion facilities dosimetric impact appears as of major interest. This paper considers different term releases of tritium-forms to the atmosphere from ITER which has experienced a frequent failure of a fueling line, due the little TES pipe break affecting a Helium-Cooled-Lithium-Lead Test-Blanket-Module. In case of 24.3 g of tritium were released from the broken fuelling-line directly into the gallery found only 0.5 g was released to the environment, assuming a little rupture in the TES piping located in the Port Cell. In this paper we assume a hypothetical daily release of one gram of tritium in HT and HTO forms. The daily failure is taken just in order to evaluate different meteorological scenarios or weather conditions. The working model simulates the tritium forms dispersion and environmental impact out of the complex ITER-tokamak (and its safeguards) of selected environmental patterns both inland and in-sea using ECMWF/FLEXPART model. We explore specific values of this ratio at different levels. We examine the influence of meteorological conditions of the tritium behavior during 24 hours after the release. For this purpose we have used a tool which consists on a coupled Lagrangian ECMWF/FLEXPART model which is useful to follow real-time releases of tritium at low levels of the boundary layer to provide an approximation of tritium cloud behavior ranging from 3 to 24 hours
机译:在a提取系统(TES)管道破裂(加油管线严重故障)的情况下,European源术语尚未在欧洲试验毯系统框架中确定为设计基准事故(DBA)。但预计约为几克。在这种关键情况下,人们非常关注环境acute运输形式(HT和HTO)的急性建模,以评估聚变设施的剂量学影响。本文考虑了从ITER到大气的不同形式的term形式的释放,该气体经历了一次加油管线的频繁故障,原因是TES管道破裂很少,从而影响了氦冷却锂铅测试毯模块。如果从破裂的加油管中直接释放出24.3克of,发现只有0.5克被释放到环境中,这是假设位于端口隔室中的TES管道破裂了。在本文中,我们假设假设以HT和HTO形式每日释放1克of。每天发生故障只是为了评估不同的气象情况或天气状况。该工作模型使用ECMWF / FLEXPART模型模拟了内陆和海域特定环境模式的复杂ITER-托卡马克(及其保障措施)中的out形态散布和环境影响。我们在不同的水平上探索该比率的特定值。我们检查了释放后24小时内conditions条件的气象条件的影响。为此,我们使用了一个由耦合的拉格朗日ECMWF / FLEXPART模型组成的工具,该模型可用于跟踪边界层低水平处的release的实时释放,以提供3至24小时范围内的cloud云行为的近似值。

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