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Preliminary sensitivity analysis for an ex-vessel LOCA without plasma shutdown for the EU DEMO WCLL blanket concept

机译:欧盟演示WCLL毯子概念没有等离子体关闭的前船基因座的初步敏感性分析

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摘要

In this early development phase of the DEMO design the uncertainty affecting many operational and design parameters can modify main outcomes of accident scenario aiming at studying the critical conditions for the vacuum vessel and the contiguous containment volumes. The aim of this paper is to perform a preliminary sensitivity analysis of an accident progression predicted by MELCOR code considering selected parameters as a figure of merit to predict possible code outcomes. The uncertainty band will be evaluated through sensitivity analyses programmed, collected and statistically manipulated through RAVEN software tool. MELCOR and RAVEN have been internally coupled through a new Python code interface developed by Sapienza University of Rome, to perform sensitivity and uncertainty quantification analyses during severe accident transient. The Beyond Design Basis Accident (BDBA) analysis of an ex-vessel loss of coolant accident (LOCA) for the water-cooled lithium lead (WCLL) blanket concept has been simulated with the fusion version of MELCOR 1.8.6 code. The postulated initiating event (PIE) is a double-ended break in the first wall (FW) cooling system distributor ring, with simultaneous failure of the plasma shutdown system. An in-vessel breach of the coolant system occurs because of FW failure, with consequent unmitigated plasma shutdown transient. Sensitivity analysis results have shown that the FW temperature at which plasma in-vessel breach occurs is strongly correlated with the mass of hydrogen produced. The same parameter has also an impact on the overall accident scenario, such as the trigger of VVPSS rupture disks and thus source term mobilization.
机译:在这种早期发展阶段,演示设计影响许多操作和设计参数的不确定性可以修改旨在研究真空容器和连续遏制量的临界条件的事故情景的主要结果。本文的目的是对Melcor代码预测的事故进展的初步敏感性分析,考虑所选择的参数作为预测可能的代码结果的值。通过通过Raven软件工具进行编程,收集和统计地操纵的灵敏度分析,将通过灵敏度分析进行评估。 Melcor和Raven通过Sapienza罗马大学开发的新的Python代码界面进行了内部耦合,在严重事故瞬态中进行敏感性和不确定性定量分析。除熔融版本的Melcor 1.8.6代码的融合版本已经模拟了除了水冷锂引线(WCLL)毯子概念的冷却液事故(LOCA)的外血管事故(LOCA)的外船丧失的超越设计基础事故(BDBA)分析。假设的启动事件(饼图)是第一墙(FW)冷却系统分配器环的双端断断裂,具有等离子体关闭系统的同时失效。由于FW故障发生,发生了一种冷却液系统的漏洞系统,因此未发生的离子关闭瞬态。敏感性分析结果表明,血浆内脉冲发生的FW温度与产生的氢气质量强烈相关。相同的参数也对整体事故情景产生了影响,例如VVPSS破裂磁盘的触发器,因此源术语动员。

著录项

  • 来源
    《Fusion Engineering and Design》 |2020年第9期|111745.1-111745.6|共6页
  • 作者单位

    Sapienza Univ Rome Dept Astronaut Elect & Energy Engn DIAEE Rome Italy;

    Sapienza Univ Rome Dept Astronaut Elect & Energy Engn DIAEE Rome Italy;

    ENEA CR Frascati UTFUS TECN Frascati Italy;

    Sapienza Univ Rome Dept Astronaut Elect & Energy Engn DIAEE Rome Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sensitivity; RAVEN; MELCOR; DEMO; BDBA; Safety;

    机译:敏感;乌鸦;甜瓜;演示;BDBA;安全;

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