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SAFETY ANALYSIS FOR HOT GAS DUCT VESSEL IN HTR-PM

机译:HTR-PM中热气导管的安全性分析

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摘要

The hot gas duct vessel (HGDV) is an important part of the high-temperature reactor-pebble-bed module (HTR-PM) primary loop pressure boundary system. It connects the reactor pressure vessel (RPV) and steam generator pressure vessel. Because the dimensions of the HGDV are smaller than those of the other two vessels, it is often considered the weakest of the three vessels. Therefore, the safety of the HGDV has become one of the most important issues in the design of the HTR-PM. In the present paper, a comprehensive safety analysis of the HGDV in the HTR-PM was performed with an emphasis on the structural features. The designs of the HGDV and the support system of the primary loop pressure boundary are first described. A preliminary safety analysis of the HGDV, including the stress calculations and leak-before-break (LBB) analysis, is then presented. The results show that the stress levels of the HGDV under various accidents have a safety margin of at least 55.3% compared with the stress limits specified in American Society of Mechanical Engineers code, and the stress intensity factor at the postulated flaw is less than the critical stress intensity factor. The LBB analysis indicated that the leak detection system is capable of detecting leaks caused by a postulated through-thickness crack in the HGDV before it reaches the critical size. Although the preliminary analysis has proved the safety of the HGDV, the consequences of a hypothetical HGDV double-ended break accident were also studied to further investigate the safety features of the HTR-PM. Several mitigation measures were employed based on the original design. The structural integrity of the support system, the reactor internals, and the containment under double-ended break accident were evaluated. The results show that these main structures could maintain integrity under the HGDV double-ended break accident.
机译:热气导管容器(HGDV)是高温反应堆-卵石床模块(HTR-PM)初级回路压力边界系统的重要组成部分。它连接反应堆压力容器(RPV)和蒸汽发生器压力容器。由于HGDV的尺寸小于其他两个容器的尺寸,因此通常认为这是三个容器中最弱的一个。因此,HGDV的安全性已成为HTR-PM设计中最重要的问题之一。在本文中,对HTR-PM中的HGDV进行了全面的安全性分析,重点是结构特征。首先描述了HGDV的设计和主回路压力边界的支持系统。然后介绍了HGDV的初步安全性分析,包括应力计算和断裂前泄漏(LBB)分析。结果表明,与美国机械工程师协会规定的应力极限相比,各种事故下HGDV的应力水平具有至少55.3%的安全裕度,并且假定缺陷处的应力强度因子小于临界值。应力强度因子。 LBB分析表明,泄漏检测系统能够在HGDV达到临界尺寸之前检测到HGDV中假定的贯穿厚度裂纹所引起的泄漏。尽管初步分析已证明了HGDV的安全性,但仍对假设的HGDV双头断裂事故的后果进行了研究,以进一步研究HTR-PM的安全性。在原始设计的基础上,采取了多种缓解措施。评估了支撑系统的结构完整性,反应堆内部结构以及双头断裂事故下的安全壳。结果表明,在HGDV双头断裂事故下,这些主要结构可以保持完整性。

著录项

  • 来源
    《Nuclear Technology》 |2011年第1期|p.29-40|共12页
  • 作者单位

    Institute of Nuclear and New Energy Technology, Tsinghua University Beijing 100084, China;

    Institute of Nuclear and New Energy Technology, Tsinghua University Beijing 100084, China;

    Institute of Nuclear and New Energy Technology, Tsinghua University Beijing 100084, China;

    Institute of Nuclear and New Energy Technology, Tsinghua University Beijing 100084, China;

    Institute of Nuclear and New Energy Technology, Tsinghua University Beijing 100084, China;

  • 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

    HTR-PM; hot gas duct vessel; LBB;

    机译:HTR-PM;热气导管容器;LBB;
  • 入库时间 2022-08-18 00:43:41

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