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Experimental Study of the Thermal-Hydraulic Phenomena in the Reactor Cavity Cooling System and Analysis of the Effects of Graphite Dispersion

机译:反应堆腔冷却系统热工水力现象的实验研究及石墨弥散效应的分析

摘要

An experimental activity was performed to observe and study the effects of graphite dispersion and deposition on thermal hydraulic phenomena in a Reactor Cavity Cooling System (RCCS). The small scale RCCS experimental facility (16.5cm x 16.5cm x 30.4cm) used for this activity represents half of the reactor cavity with an electrically heated vessel. Water flowing through five vertical pipes removes the heat produced in the vessel and releases it in the environment by mixing with cold water in a large tank. PIV technique was used to study the velocity field of the air inside the cavity. A set of 52 thermocouples was installed in the facility to monitor the temperature profiles of the vessel and pipes walls and air. 10g of a fine graphite powder (particle size average 2 [mu]m) were injected into the cavity through a spraying nozzle placed at the bottom of the vessel. Temperatures and air velocity field were recorded and compared with the measurements obtained before the graphite dispersion, showing a decrease of the temperature surfaces which was related to an increase in their emissivity. The results contribute to the understanding of the RCCS capability in case of an accident scenario.
机译:进行了一项实验活动,以观察和研究反应堆腔冷却系统(RCCS)中石墨的分散和沉积对热工现象的影响。用于此活动的小型RCCS实验设备(16.5厘米x 16.5厘米x 30.4厘米)代表带有电加热容器的反应堆腔室的一半。流经五个垂直管的水可将容器中产生的热量散发出去,并通过与大型水箱中的冷水混合将其释放到环境中。 PIV技术用于研究腔体内空气的速度场。设施中安装了52个热电偶,以监测容器,管壁和空气的温度曲线。通过放置在容器底部的喷嘴将10g细石墨粉(平均粒径为2μm)注入腔中。记录温度和空气速度场,并将其与在石墨分散体之前获得的测量结果进行比较,结果表明温度表面的下降与它们的发射率的增加有关。结果有助于了解事故情况下的RCCS功能。

著录项

  • 作者

    Vaghetto Rodolfo;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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