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EXPERIMENTS ON STEAM CONDENSATION AND TEMPERATURE DISTRIBUTION WITHIN THE IRWST OFAPR-1400

机译:APR-1400 IRWST内蒸汽凝结和温度分布的实验

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摘要

The in-containment refueling water storage tank (IRWST) is an advanced design concept that has been adopted for the APR-1400 (a reactor type recently developed by Korea). It condenses high-temperature high-pressure fluid discharged from the reactor cooling system through pressurizer relief valves during transients. The condensation of high enthalpy fluid increases the temperature of the coolant in the IRWST. If the temperature of the water storage tank exceeds the temperature limit of 93.3°C (bubble escape temperature), oscillatory vibration occurs, and part of the steam does not condense and instead rises until it is discharged to the air inside the water storage tank. This phenomenon burdens a mechanical load upon the water storage tank structure and thereby compromises structural integrity of the IRWST. In particular, as the IRWST spargers are installed asymmetrically, they cause an uneven temperature distribution and then raise the topical temperature to the bubble escape temperature so prematurely that the cooling efficiency of the IRWST water storage tank may deteriorate. To improve the previous experiment [KSME Int. J., 18, 820 (2004)] and simulate these conditions, a cylindrical water storage tank was fabricated with a height and volume ratio identical to the actual IRWST, that is, 1:1 and 1:400, respectively; then, the steam condensation pattern and temperature distribution inside the water storage tank were observed and measured. The result of the experiment revealed that the horizontal temperature distribution was quite uniform and that the temperature was the highest on the surface of the water except near the sparger; in particular, the temperature of the surface of the water between the two spargers was the highest. And, a relatively uniform vertical temperature rise was observed. However, in the lower part of the tank (lower than 40 cm from the end of the bottom hole), the distribution revealed many interesting things related to the natural convection flow patterns. Also, when bubbles escaped at the temperature limit, a severe vibration and an attendant noise were observed.
机译:箱内加油水箱(IRWST)是APR-1400(韩国最近开发的反应堆类型)所采用的先进设计理念。在瞬态过程中,它通过增压器安全阀冷凝从反应堆冷却系统排出的高温高压流体。高焓流体的冷凝会提高IRWST中冷却液的温度。如果储水箱的温度超过93.3°C(气泡逸出温度)的温度极限,则会发生振荡振动,并且部分蒸汽不会凝结,而是会上升,直到将其排放到储水箱内的空气中为止。这种现象在储水箱结构上增加了机械负荷,从而损害了IRWST的结构完整性。特别是,由于IRWST喷射器安装不对称,因此会引起温度分布不均,然后将局部温度升高到气泡逸出温度,过早地导致IRWST储水箱的冷却效率下降。为了改善先前的实验[KSME Int。 J.,18,820(2004)]并模拟这些条件,制造了一个圆柱形储水罐,其高度和体积比分别等于实际的IRWST,即分别为1:1和1:400;然后,观察并测量储水罐内的蒸汽冷凝模式和温度分布。实验结果表明,水平温度分布相当均匀,除喷头附近的水温最高。特别地,两个喷射器之间的水表面温度最高。并且,观察到相对均匀的垂直温度升高。然而,在储罐的下部(距井底距离不到40厘米),分布揭示了许多与自然对流流动模式有关的有趣现象。另外,当气泡在温度极限处逸出时,观察到剧烈的振动和伴随的噪声。

著录项

  • 来源
    《Nuclear Technology》 |2012年第2期|p.188-202|共15页
  • 作者

    S. N. KIM;

  • 作者单位

    Kyunghee University, Department of Nuclear Engineering, Seocheon-dong #1 Giheung-gu, Yongin-si, Gyeonggi-do 446-701, 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
  • 关键词

    bubble escape temperature; steam condensation; IRWST;

    机译:气泡逸出温度;蒸汽冷凝爱尔兰科学技术大学;
  • 入库时间 2022-08-18 00:43:35

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