首页> 外文会议>CNS/CNA student conference;Annual conference of the Canadian Nuclear Society >HEAT TRANSFER PARAMETERS FOR GLASS-PEENED CALANDRIA TUBE IN PRESSURE TUBE AND CALANDRIA TUBE CONTACT CONDITIONS
【24h】

HEAT TRANSFER PARAMETERS FOR GLASS-PEENED CALANDRIA TUBE IN PRESSURE TUBE AND CALANDRIA TUBE CONTACT CONDITIONS

机译:压力管和卡兰德里亚管接触条件下的玻璃卡兰德里亚管的传热参数

获取原文

摘要

During a postulated event of large LOCA in CANDU reactors, the pressure tube may balloon to contact with its surrounding calandria tube to transfer heat to the moderator. To confirm the integrity of the fuel channel after the contact with a given moderator subcooling, many experiments have been performed in the last three decades by applying different pressure tube heatup rates, different pressure tube pressures and different moderator subcoolings for calandria tubes with smooth outer surface and glass-peened surface. A concept of Equivalent Moderator Subcooling (EMS) has been put forward to determine integrity of fuel channel upon pressure tube/calandria tube contact based on the existing experiment results. This concept has been presented in another work. In this work, the contact thermal conductance between pressure tube and calandria tube, critical heat flux, minimum film boiling temperature, empirical methods for nucleate boiling and film boiling heat transfer coefficient on the glass-peened calandria tube surface are discussed and estimated based on some experimental results and the EMS concept. These parameters are confirmed by simulating the existing experiments using a computer code. The estimated results may help detailed analyses on fuel channel integrity upon PT/CT contact if necessary.
机译:在CANDU反应堆中假定LOCA较大的事件期间,压力管可能会膨胀以与其周围的加热管接触,从而将热量传递给减速器。为了确认与给定的慢化器过冷接触后燃料通道的完整性,在过去的三十年中,通过对具有光滑外表面的排管进行了不同的压力管升温速率,不同的压力管压力和不同的慢化器过冷,已进行了许多实验。和玻璃喷丸处理的表面。根据现有的实验结果,提出了等效减速器过冷(EMS)的概念来确定压力管/尾管接触时燃料通道的完整性。此概念已在另一篇著作中提出。在这项工作中,讨论并估计了压力管与加热管之间的接触热导率,临界热通量,最低沸腾温度,玻璃化加热管表面上成核沸腾的经验方法和沸腾膜的传热系数。实验结果和EMS概念。通过使用计算机代码模拟现有实验可以确认这些参数。必要时,估计结果可能有助于详细分析PT / CT接触时的燃料通道完整性。

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