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Direct vessel inclined injection system for reduction of emergency core coolant direct bypass in advanced reactors

机译:直接容器倾斜喷射系统,用于减少高级反应堆中的应急堆芯冷却剂直接旁路

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摘要

Multidimensional thermal hydraulics in the APR1400 (Advanced Power Reactor 1400 MWe) downcomer during a large-break loss-of-coolant accident (LBLOCA) plays a pivotal role in determining the capability of the safety injection system. APR1400 adopts the direct vessel injection (DⅥ) method for more effective core penetration of the emergency core cooling (ECC) water than the cold leg injection (CLI) method in the OPR1000 (Optimized Power Reactor 1000 MWe). The DⅥ method turned out to be prone to occasionally lack in efficacious delivery of ECC to the reactor core during the reflood phase of a LBLOCA, however. This study intends to demonstrate a direct vessel inclined injection (DⅦ) method, one of various ideas with which to maximize the ECC core penetration and to minimize the direct bypass through the break during the reflood phase of a LBLOCA. The 1/7 scaled down THETA (Transient Hydrodynamics Engineering Test Apparatus) tests show that a vertical inclined nozzle angle of the DⅦ system increases the downward momentum of the injected ECC water by reducing the degree of impingement on the reactor downcomer, whereby lessening the extent of the direct bypass through the break. The proposed method may be combined with other innovative measures with which to ensure an enough thermal margin in the core during the course of a LBLOCA in APR1400.
机译:APR1400(先进功率反应堆1400 MWe)降液管中的多维热力液压系统在大面积冷却液损失事故(LBLOCA)期间起着决定安全注入系统功能的关键作用。 APR1400采用直接容器注入(DⅥ)方法,比OPR1000(Optimized Power Reactor 1000 MWe)中的冷段注入(CLI)方法更有效地渗透应急堆芯冷却(ECC)水。然而,事实证明,在LBLOCA的再灌注阶段,DⅥ方法有时缺乏有效地将ECC有效地输送至反应堆堆芯的倾向。这项研究旨在证明一种直接的容器倾斜注入(DⅦ)方法,该方法是在LBLOCA的重新注水阶段最大化ECC岩心渗透率并最大程度地减少通过裂缝的直接旁路的多种方法之一。 1/7比例缩小的THETA(瞬态流体力学工程测试设备)测试表明,DⅦ系统的垂直倾斜喷嘴角通过减少对反应堆降液管的撞击程度而增加了注入的ECC水的向下动量,从而减小了范围通过中断的直接旁路。所提出的方法可以与其他创新措施相结合,以确保APR1400中的LBLOCA过程中铁心具有足够的热裕度。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2006年第22期|p.2329-2342|共14页
  • 作者单位

    Seoul National University, San 56-1 Sillim-dong, Gwanak-gu, Seoul 151-742, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

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