首页> 外文会议>ASME Pressure Vessels and Piping Conference >EXTENSION OF PASCAL4 CODE FOR PROBABILISTIC FRACTURE MECHANICS ANALYSIS OF REACTOR PRESSURE VESSEL IN BOILING WATER REACTOR
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EXTENSION OF PASCAL4 CODE FOR PROBABILISTIC FRACTURE MECHANICS ANALYSIS OF REACTOR PRESSURE VESSEL IN BOILING WATER REACTOR

机译:沸水反应器中反应器压力容器概率断裂力学分析的Pascal4码

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In Japan, Japan Atomic Energy Agency has developed a probabilistic fracture mechanics (PFM) analysis code, PASCAL4, for probabilistic evaluation of reactor pressure vessels (RPVs) in pressurized water reactors (PWRs) considering neutron irradiation embrittlement and pressurized thermal shock (PTS) events. Besides severe PTS events, however, transients associated with normal operations, such as the cooldown and heatup transients associated with reactor shutdown and startup, respectively, should also be considered in the integrity assessment of RPVs in both PWRs and boiling water reactors (BWRs). With regard to a heatup transient, because temperature is at its minimum, and tensile stress at its maximum on the RPV outer surface, outer surface crack and embedded crack near the RPV outer surface should be taken into account. To extend the applicability of PASCAL4, we improved the code to include analysis functions for these cracks. The improved PASCAL4 can be used to run PFM analyses of RPVs subjected to both cooldown (including PTS) and heatup transients. In this paper, improvements made to PASCAL4 are firstly described, including the incorporated stress intensity factor solutions and the corresponding calculation methods for vessel outer surface crack and embedded crack near the outer surface. Using the improved PASCAL4, PFM analysis examples for a Japanese BWR-type model RPV subjected to thermal transients including a low temperature overpressure event and a heatup transient are presented.
机译:在日本,日本国际原子能机构已在压水反应堆(压水堆)考虑中子辐照脆化和加压热冲击(PTS)的事件开发了概率断裂力学(PFM)分析代码,PASCAL4,反应堆压力容器(遥控飞行器)的概率的评估。除了严重的PTS事件,然而,与正常的操作,如用反应堆关闭和启动相关的冷却时间,以及在加热瞬变瞬态变化,分别应该也可以在两种压水堆遥控飞行器和沸水反应堆(沸水堆)的完整性评估中考虑。对于一个heatup瞬态,因为温度处于其最小值,且拉伸应力在其RPV外表面,外表面裂纹的最大和嵌入式裂纹RPV外表面附近,应考虑在内。为了延长PASCAL4的适用性,我们改进的代码包括用于这些裂纹分析功能。改进PASCAL4可用于运行进行两个冷却时间(包括PTS),以及在加热瞬变遥控飞行器的PFM分析。在本文中,以制成PASCAL4改进首先描述,包括被合并的应力强度因子的解决方案和用于容器外表面裂纹对应的计算方法和外表面附近嵌入裂纹。使用改进PASCAL4,对经受热瞬变包含低温过压事件和瞬态呈现一个heatup日本BWR型模型RPV PFM分析的例子。

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