首页> 外文会议>International Congress on Advances in Nuclear Power Plants >Evaluation of the Effect of Condensation Heat Transfer on Performance of the Passive Auxiliary Feedwater System
【24h】

Evaluation of the Effect of Condensation Heat Transfer on Performance of the Passive Auxiliary Feedwater System

机译:凝结热传递对无源辅助供给水系统性能的影响

获取原文

摘要

As passive safety features for nuclear power plants receive increasing attention, various studies have been conducted to develop safety systems for 3rd-generation (GEN-III) nuclear power plants that are driven by passive systems. The Passive Auxiliary Feedwater System (PAFS) is one of several passive safety systems being designed for the Advanced Power Reactor Plus (APR+), and extensive studies are being conducted to complete its design and to verify its feasibility. Because the PAFS removes decay heat from the reactor core under transient and accident conditions, it is necessary to evaluate the heat removal capability of the PAFS under hypothetical accident conditions. The heat removal capability of the PAFS is strongly depend on the heat transfer at the condensate tube in Passive Condensation Heat Exchanger (PCHX). To evaluate the model of heat transfer coefficient for condensation, the Multi-dimensional Analysis of Reactor Safety (MARS) code is used to simulate the experimental results from PAFS Condensing Heat Removal Assessment Loop (PASCAL). Shah's correlation, default model for condensation heat transfer coefficient in the MARS code, under-predicts the experimental data from the PASCAL. To improve the calculation result, Thome's correlation and new version of Shah's correlation are implemented and compared to the experimental data.
机译:由于核电厂的被动安全特征得到了越来越长的关注,已经进行了各种研究,以开发由被动系统驱动的第三代(Gen-III)核电站的安全系统。被动辅助进给水系统(PAF)是为先进的电源堆积(APR +)设计的多个被动安全系统之一,并且正在进行广泛的研究以完成其设计并验证其可行性。因为PAF在瞬态和事故条件下从反应器核心去除衰变热量,所以有必要在假设事故条件下评估PAFS的散热能力。 PAFS的散热能力强烈地取决于无源冷凝热交换器(PCHX)中冷凝管的传热。为了评估冷凝的传热系数模型,反应堆安全(MARS)代码的多维分析用于模拟PAFS冷凝热除去评估环(Pascal)的实验结果。 Shah的相关性,MARS代码中的冷凝传热系数的默认模型,预测来自帕斯卡的实验数据。为了提高计算结果,将汤姆的相关性和新版本的Shah相关的相关性并与实验数据相比。

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