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Experimental investigation of iodine removal and containment depressurization in containment spray system test facility of 700 MWe Indian pressurized heavy water reactors

机译:印度700 MWe加压重水反应堆安全壳喷雾系统测试装置中除碘和安全壳减压的实验研究

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摘要

As an additional safety measure in the new 700 MWe Indian pressurized heavy water reactors, the first of a kind system called containment Spray System is introduced. The system is designed to cater/mitigate the conditions after design basis accidents i.e., loss of coolant accident and main steam line break. As a contribution to the safety analysis of condition following loss-of-coolant accidents, experiments are carried out to establish the performance of the system. The loss of coolant is simulated by injecting saturated steam and iodine vapors into the containment vessel in which air is enclosed at atmospheric and room temperature, and then the steam-air mixture is cooled by sprays of water. The effect of water spray on the containment vessel pressure and the iodine scrubbing in a scaled down facility is investigated for the containment spray system of Indian pressurized heavy water reactors. The experiments are carried out in the scaled down vessel of the diameter of 2.0 m and height of 3.5 m respectively. Experiments are conducted with water at room temperature as the spray medium. Two different initial vessel pressure i.e. 0.7 bar and 1.0 bar are chosen for the studies as they are nearing the loss of coolant accident & main steam line break pressures in Indian pressurized heavy water reactors. These pressures are chosen based on the containment resultant pressures after a design basis accident. The transient temperature and pressure distribution of the steam in the vessel are measured during the depressurization. The pressure and temperature history of the system is measured using high temperature pressure transmitter and the K-type thermocouples. The iodine scrubbing is measured through periodic sampling from the vessel. The influence of the Sauter mean diameter (SMD) is studied on the depressurization rate of the vessel at different vessel pressures. Studies are performed to optimize the containment spray system configuration and to establish the phenomena with respect to Indian pressurized heavy water reactors. In all the experiments, the spray flow rate is kept constant, while the SMD is varied by using different spray nozzles. (C) 2017 Elsevier B.V. All rights reserved.
机译:作为新的700 MWe印度加压重水反应堆的一项附加安全措施,引入了第一种安全壳喷射系统。该系统旨在在设计基准事故(即冷却液流失事故和主蒸汽管路中断)后满足/减轻条件。为了对冷却液损失事故后的状况进行安全性分析做出贡献,进行了实验以建立系统的性能。通过将饱和蒸汽和碘蒸汽注入到安全壳中来模拟冷却剂的损失,安全壳中的空气在常温和室温下封闭,然后通过喷水冷却蒸汽-空气混合物。对于印度加压重水反应堆的安全壳喷雾系统,研究了水喷雾对安全壳压力和按比例缩小设施中碘洗涤的影响。实验分别在直径为2.0 m和高度为3.5 m的按比例缩小的容器中进行。实验是在室温下用水作为喷雾介质进行的。研究中选择了两种不同的初始容器压力,即0.7 bar和1.0 bar,因为它们接近印度加压重水反应堆中的冷却剂事故损失和主蒸汽管线断裂压力。这些压力是基于设计基准事故后基于安全壳合成压力选择的。在减压过程中测量容器中蒸汽的瞬态温度和压力分布。使用高温压力变送器和K型热电偶测量系统的压力和温度历史记录。碘洗涤是通过定期从容器中取样来进行的。研究了Sauter平均直径(SMD)对不同容器压力下容器减压速率的影响。进行了研究,以优化安全壳喷雾系统的配置并确定与印度加压重水反应堆有关的现象。在所有实验中,喷雾流量保持恒定,而使用不同的喷嘴改变SMD。 (C)2017 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2017年第5期|46-62|共17页
  • 作者单位

    IIT, Dept Mech Engn, Bombay 400076, Maharashtra, India;

    Nucl Power Corp India Ltd, Directorate Technol Dev, Bombay, Maharashtra, India;

    Nucl Power Corp India Ltd, Directorate Technol Dev, Bombay, Maharashtra, India;

    Nucl Power Corp India Ltd, Directorate Technol Dev, Bombay, Maharashtra, India;

    IIT, Dept Mech Engn, Bombay 400076, Maharashtra, India;

    IIT, Dept Mech Engn, Bombay 400076, Maharashtra, India;

  • 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

    Spray nozzles; Sauter mean diameter (SMD); Iodine removal half life; Decontamination Factor;

    机译:喷嘴;苏特平均直径(SMD);除碘半衰期;去污系数;
  • 入库时间 2022-08-18 00:41:24

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