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DEVELOPMENT OF TECHNIQUE FOR CONTROLLING NATURAL CIRCULATION FLOW BY USING HELIUM GAS

机译:氦气控制自然循环流技术的发展

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The purpose of this study is to investigate a control method of natural circulation flow of air by injection of helium gas. A depressurization accident by the primary pipe rupture is one of the design-basis accidents of a Very High Temperature Reactor (VHTR). When the double coaxial duct connecting between a reactor core and an intermediate heat exchanger (IHX) module breaks, air is expected to enter the reactor pressure vessel from the breach and oxidize in-core graphite structures. Then, it seems to be probable that the natural circulation flow of air in the reactor pressure vessel produce continuously. In such condition, injection of helium gas into the channel by a passive method can prevent occurrence of the natural circulation flow of air in the reactor pressure vessel. Therefore, it is thought that oxidation of in-core graphite structures by air ingress can be prevented by establishing this method. The experiment has been carried out regarding the natural circulation flow using a circular tube consisting of a reverse U-shaped type. The vertical channel consists of one side heated tube and the other side cooled tube. The experimental procedure is as follows. Firstly, the apparatus is filled with air and one vertical tube is heated. Then, natural circulation of air will be produced in the channel. After the steady state is established, a small amount of helium gas is injected from the top of the channel. The velocity, mole fraction, temperature of gas, and temperature of the tube wall are measured during the experiment. The results were obtained as follows. When the temperature difference between the both vertical tubes was kept at about 60K, the velocity of the natural circulation flow of air was measured about 0.17m/s. During a steady state, a small amount of helium gas was injected into the channel. When the volume of injected helium gas is about 5.7% of the total volume of the channel, the velocity of the natural circulation flow of air became around zero. After 810 seconds elapsed, the natural circulation flow suddenly produced again. The natural circulation flow of air can be controlled by injecting of helium gas.
机译:这项研究的目的是研究一种通过注入氦气来控制空气自然循环流量的方法。一次管道破裂引起的降压事故是超高温反应堆(VHTR)的设计基础事故之一。当连接在反应堆堆芯和中间热交换器(IHX)模块之间的双同轴管道破裂时,预计空气会从缺口处进入反应堆压力容器并氧化堆芯内的石墨结构。然后,似乎有可能在反应堆压力容器中连续产生空气的自然循环流。在这种情况下,通过被动方法将氦气注入通道中可以防止在反应堆压力容器中空气自然循环流动的发生。因此,据认为,通过建立该方法,可以防止由于空气进入而引起的核内石墨结构的氧化。关于自然循环流的实验,是使用由倒U字形构成的圆管进行的。垂直通道由一侧加热管和另一侧冷却管组成。实验步骤如下。首先,该设备充满空气并且加热一根垂直管。然后,通道中将产生空气的自然循环。建立稳定状态后,从通道顶部注入少量氦气。在实验过程中测量速度,摩尔分数,气体温度和管壁温度。结果获得如下。当两个垂直管之间的温度差保持在约60K时,测得的自然空气循环流速度约为0.17m / s。在稳定状态下,将少量氦气注入通道中。当注入的氦气的体积约为通道总体积的5.7%时,空气的自然循环流速度变为零附近。经过810秒后,自然循环流量突然再次产生。空气的自然循环流量可以通过注入氦气来控制。

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