首页> 外文会议>10th International Conference on Nuclear Engineering, Vol.2, Apr 14-18, 2002, Arlington, Virginia >THE PSI ARTIST PROJECT: AEROSOL RETENTION AND ACCIDENT MANAGEMENT ISSUES FOLLOWING A STEAM GENERATOR TUBE RUPTURE
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THE PSI ARTIST PROJECT: AEROSOL RETENTION AND ACCIDENT MANAGEMENT ISSUES FOLLOWING A STEAM GENERATOR TUBE RUPTURE

机译:PSI艺术家项目:蒸汽发生器破裂后的气溶胶保留和事故管理问题

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Steam generator tube rupture (SGTR) incidents, such as those, which occurred in various operating pressurized, water reactors in the past, are serious operational concerns and remain among the most risk-dominant events. Although considerable efforts have been spent to understand tube degradation processes, develop improved modes of operation, and take preventative and corrective measures, SGTR incidents cannot be completely ruled out. Under certain conditions, high releases of radionuclides to the environment are possible during design basis accidents (DBA) and severe accidents. The severe accident codes' models for aerosol retention in the secondary side of a steam generator (SG) have not been assessed against any experimental data, which means that the uncertainties in the source term following an unisolated SGTR concurrent with a severe accident are not currently quantified. The accident management (AM) procedures aim at avoiding or minimizing the release of fission products from the SG The enhanced retention of activity within the SG defines the effectiveness of the accident management actions for the specific hardware characteristics and accident conditions of concern. A sound database on aerosol retention due to natural processes in the SG is not available, nor is an assessment of the effect of management actions on these processes. Hence, the effectiveness of the AM in SGTR events is not presently known. To help reduce uncertainties relating to SGTR issues, an experimental project, ARTIST (AeRosol Trapping In a Steam generaTor), has been initiated at the Paul Scherrer Institut to address aerosol and droplet retention in the various parts of the SG The test section is comprised of a scaled-down tube bundle, a full-size separator and a full-size dryer unit. The project will study phenomena at the separate effect and integral levels and address AM issues in seven distinct phases: Aerosol retention in 1) the broken tube under dry secondary side conditions, 2) the near field close to break under dry conditions, 3) the bundle far- field under dry conditions, 4) the separator and dryer under dry conditions, 5) the bundle section under wet conditions, 6) droplet retention in the separator and dryer sections and 7) the overall SG (integral tests). Prototypical test parameters are selected to cover the range of conditions expected in severe accident as well as DBA scenarios. This paper summarizes the relevant issues and introduces the ARTIST facility and the provisional test program which will run between 2003 and 2007.
机译:蒸汽发生器管破裂(SGTR)事件,例如过去在各种运行中的加压水反应堆中发生的事件,是严重的操作问题,并且仍然是风险最高的事件之一。尽管已经花费了大量的精力来了解管子的降解过程,开发改进的操作模式,并采取预防和纠正措施,但不能完全排除SGTR事件。在某些情况下,在设计基准事故(DBA)和严重事故中,放射性核素有可能向环境中大量释放。尚未针对任何实验数据评估严重事故守则的蒸汽发生器(SG)二次侧气溶胶滞留模型,这意味着当前未对SGTR进行非隔离并伴有严重事故的源术语存在不确定性量化。事故管理(AM)程序旨在避免或最大程度地减少裂变产物从SG的释放。SG内部活动的增强保留,定义了针对特定硬件特征和所关注事故条件的事故管理措施的有效性。尚无关于SG中自然过程导致的气溶胶滞留的健全数据库,也没有评估管理措施对这些过程的影响的评估。因此,目前尚不知道AM在SGTR事件中的有效性。为了帮助减少与SGTR问题有关的不确定性,Paul Scherrer研究所启动了一个实验项目ARTIST(在蒸汽发生器中进行气溶胶捕获),以解决SG各个部分的气溶胶和液滴保留问题。测试部分包括缩小的管束,全尺寸分离器和全尺寸干燥机单元。该项目将研究在单独作用和整体水平上的现象,并在七个不同阶段解决AM问题:1)气溶胶滞留:1)在干燥的次要条件下破裂的管; 2)在干燥条件下接近破裂的近场; 3)干燥条件下的束远场,4)干燥条件下的分离器和干燥器,5)潮湿条件下的束部分,6)液滴在分离器和干燥器部分中的保留,7)整体SG(整体测试)。选择原型测试参数以涵盖严重事故以及DBA场景中预期的条件范围。本文总结了相关问题,并介绍了将于2003年至2007年运行的ARTIST设备和临时测试程序。

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