【24h】

A STUDY OF LIQUID ENTRAINMENT IN OSCILLATORY FLOWS

机译:振荡流中液体夹带的研究

获取原文

摘要

In a large break loss of coolant accident (LOCA) in a pressurized water reactor (PWR), a break may occur on one of the cold legs. The emergency core cooling system (ECCS) must provide sufficient coolant to the core to remove decay heat and prevent the cladding from exceeding 1477.6 K. During reflood, flow to the core is most often gravity driven, resulting in an oscillatory delivery of coolant to the core. These oscillations are attributed to vapor generation in the core and the dynamic response of the downcomer water level. The amount of liquid entrained can be significant because in an accident scenario, the progress rate will be slowed and it can take longer to fully recover the core. Most reflood experiments have been conducted with constant forced reflood rates, and have not explored in detail the effects of oscillations on liquid entrainment and rod bundle heat transfer. The few studies that have been conducted for oscillating flows indicate enhanced entrainment of liquid at the quench front. At the NRC-PSU Rod Bundle Heat Transfer (RBHT) Test Facility, an electrically heated 7×7, 3.66m long rod bundle array has the capabilities to perform both constant and oscillatory forced flooding rate experiments. For varying oscillation periods and inlet subcoolings, these system parameters' effect the liquid entrainment has been analyzed. Using a frequency analysis and signal processing technique, the percent liquid entrainment has been determined in one up- or down-stroke for oscillatory reflood. These findings, which are important to rod bundle heat transfer during reflood transients, have been explained based on the physics of the problem.
机译:在加压水反应器(PWR)中的冷却液事故(LOCA)的大休息中,在一个冷腿上可能发生突破。紧急核心冷却系统(ECC)必须为核心提供足够的冷却剂以除去腐烂热量并防止包层超过1477.6 K.在RESHOD期间,到核心的流量最多是重力驱动的,导致冷却剂的振荡递送核。这些振荡归因于核心中的蒸气产生和降液管水位的动态响应。夹带的液体量可能是显着的,因为在事故方案中,进度率将会减速,完全恢复核心可能需要更长时间。大多数反晶实验都以恒定的强制反射率进行,并未详细探索振荡对液体夹带和杆束热传递的影响。已经进行了用于振荡流动的少数研究表明淬火前部增强液体夹带。在NRC-PSU杆束传热(RBHT)测试设施中,电加热的7×7,3.66M长的杆束阵列具有执行恒定和振荡的强制溢流率实验的能力。对于不同的振荡周期和入口过脱机,这些系统参数的影响已经分析了液体夹带。使用频率分析和信号处理技术,液体夹带百分比已在一个上或下冲程中确定用于振荡的反射。这些发现是基于问题的物理学来解释在RefleD瞬变期间的杆束热传递的发现。

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