首页> 外文期刊>Journal of nuclear science and technology >Pellet-Cladding Mechanical Interaction of PWR Fuel Rod Under Rapid Power Transient
【24h】

Pellet-Cladding Mechanical Interaction of PWR Fuel Rod Under Rapid Power Transient

机译:快速功率瞬变下压水堆燃料棒的丸粒-覆层机械相互作用

获取原文
           

摘要

A refabricated commercial PWR fuel rod (active length : 0.12 m) base-irradiated up to burn-up of 39 MWd/kg U and an unirradiated PWR fuel rod were prepared. After loading each test fuel rod into an atmospheric irradiation capsule at the Nuclear Safety Research Reactor (NSRR) in the Japan Atomic Energy Research Institute (JAERI), the rods were irradiated with rapid increase of linear heat rating from 4 to 32 kW/m with ramp rate of 3 kW/ms.The results obtained are summarized as follows :(1) A magnitude of pellet-cladding mechanical interaction (PCMI) evaluated by rod axial strain was 0.07% for base-irradiated PWR fuel and 0.08% for unirradiated PWR one. The prevention of fuel rods from failure was partially due to relative low terminal power level (32 kW/m) against defected fuel rod in TRANS RAMP II (60 kW/m) and partially due to the strong PCMI relaxation occurred in UO2 fuel in the course of rapid power increase. The PCMI decrease by relaxation which occurred during rapid power increase is quite new phenomenon, and may be useful for PWR fuel rods from view point of PCMI failure pre- vention.(2) Fission gas release (FGR) of the tested PWR fuel rod was 0.17% for base-irradiation and 0.63% for rapid power transient. The principal mechanism for the former may be the recoil/knock out and that for latter may be the micro haircracking in UO2 fuel. Within this experimental scope, the observed magnitude of FGR was insufficient to induce stress corrosion cracking on the tested fuel rods.
机译:制备了经过基本辐射的39 MWd / kg U燃烧的商业化PWR燃料棒(有效长度:0.12 m)和未经辐射的PWR燃料棒。将每根测试燃料棒装入日本原子能研究所(JAERI)的核安全研究堆(NSRR)的大气辐照舱后,以线性热额定值从4 kW / m迅速增加到30斜率为3 kW / ms。获得的结果总结如下:(1)通过棒轴向应变评估的颗粒-包层机械相互作用(PCMI)值,基本辐照的PWR燃料为0.07%,未辐照的PWR为0.08%一。防止燃料棒发生故障的部分原因是相对于TRANS RAMP II中有缺陷的燃料棒而言,相对较低的终端功率水平(32 kW / m)(60 kW / m),部分是由于UO2燃料中PCO的强烈弛豫引起的。功率快速增加的过程。快速功率增加期间发生的松弛引起的PCMI降低是一个相当新的现象,从防止PCMI故障的角度来看,它可能对PWR燃料棒有用。(2)被测PWR燃料棒的裂变气体释放(FGR)为基准辐射为0.17%,快速功率瞬变为0.63%。前者的主要机制可能是后坐/击倒,后者的主要机制可能是UO2燃料中的微裂纹。在此实验范围内,观察到的FGR大小不足以在测试的燃料棒上引起应力腐蚀裂纹。

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