首页> 外文会议>International topical meeting on nuclear reactor thermal hydraulics >SYSTEM THERMALHYDRAULICS FOR DBA ANALYSIS AND SIMULATION STATUS OF TOOLS AND METHODS AND DIRECTION FOR FUTURE RD
【24h】

SYSTEM THERMALHYDRAULICS FOR DBA ANALYSIS AND SIMULATION STATUS OF TOOLS AND METHODS AND DIRECTION FOR FUTURE RD

机译:用于DBA分析和工具仿真状态的系统热力学,方法和未来研发的方向

获取原文

摘要

System thermalhydraulic investigations of Design Basis Accident require several tools and methods including the Process Identification and Ranking Table, the scaling, experiment analysis, modeling, code development, code Validation and Verification, and Uncertainty Quantification. This paper intends to give an overview of these methods and tools showing what the state of the art is, and presenting some recent advances. Recommendations are made with future direction for R&D including the need of new advanced experiments and instrumentation, and the future role of CFD and multi-scale analyses. For many people it is not clear what current system codes are, and what they can be. Then the main characteristics of these codes are recalled and propositions are made to clarify the code capabilities and limitations and to improve the knowledge of the conditions for a correct application of the codes for safety in a Best Estimate Plus Uncertainty approach. Also the on-going developments of 3-field models and Transport of Interfacial Area are summarized and associated experimental needs are identified. The growing role of 3D modelling of reactor core and Pressure Vessel requires additional experimental data for a proper validation. CFD in open medium also contributes to investigations when 3D geometrical aspects play an important role. Recent activities performed in the OECD-NEA Working Group for Analysis and Management of Accidents is summarized and recent applications of two-phase CFD to boiling flows and two-phase PTS scenarios are reported. The role of a multi-scale approach of safety issues is illustrated for the LOCA transients in LWRs. Attention is focused on the need of specific validation experiments and of consolidated uncertainty methods for both system codes and CFD codes.
机译:设计基础事故的系统热液调查需要几种工具和方法,包括过程识别和排名表,缩放,实验分析,建模,代码开发,代码验证和验证以及不确定性量化。本文旨在概述这些方法和工具,展示了最新的状态,并呈现了最近的进展。建议采用未来的研发方向制定,包括新的先进实验和仪器,以及CFD和多尺度分析的未来作用。对于许多人来说,目前尚不清楚当前系统代码以及它们可以是什么。然后回顾了这些代码的主要特征,并进行了命题,以澄清代码能力和限制,并提高正确应用守则的条件的知识,以便在最佳估计和不确定方法中提高安全性。此外,总结了3场模型的开展开发和界面区域的运输,并确定了相关的实验需求。反应堆芯和压力容器的3D建模的越来越多的作用需要额外的实验数据进行适当的验证。当3D几何方面发挥着重要作用时,开放媒体的CFD也有助于调查。据报道,经合组织的分析和管理工作组进行了最近进行的活动,并报告了两阶段CFD对沸腾流动和两相PTS情景的最新活动。为LWRS中的LOCA瞬变说明了多种安全问题的角色的作用。注意力集中在需要具体的验证实验和系统代码和CFD代码的统一不确定性方法。

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