首页> 外文会议>International conference on nuclear engineering;ICONE18 >THE SENSITIVITY IMPROVEMENT OF PASSIVE SHUTDOWN SYSTEM BASED ON CURIE POINT ALLOY IN A FAST REACTOR
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THE SENSITIVITY IMPROVEMENT OF PASSIVE SHUTDOWN SYSTEM BASED ON CURIE POINT ALLOY IN A FAST REACTOR

机译:快速反应器中基于Curit Point合金的无源关机系统的灵敏度改进

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The magnetic properties will be lost when the temperature of Curie point alloy is above the Curie point temperature. The physical properties of Curie point alloy are used for Passive Actuated Shutdown System (PASS) in the Fast Reactor, for example American, Japan, the shutdown systems are called Self Actuated Shutdown System (SASS). The shutdown device is composed of the up assembly and the down assembly. The up one is a magnetic material and the down one is Curie point alloy. The reliability of PASS in normal condition, and whereabouts of sensitivity are determined by the properties of Curie point alloy. The Reactor-type Experiment Furnace and related circuits were designed to carry out static and dynamic experiments under the high temperature. Cylindrical alloy functions were investigated through the high temperature experiments outside of the reactor. The results showed that improvement was necessary because of long response time. In order to improve the sensitivity of PASS, different shapes were designed for Curie point alloy, under the premise that PASS was reliable. The response times of different sharps were calculated by finite element software, ANSYS, in abnormal condition. Comparison of response times of cylinder, quincunx and fins model under the same conditions, quincunx structure had the shortest response time when the temperature of Curie point ally was above the Curie point temperature. The results obtained from the high-temperature experiments, also showed that the quincunx has the shortest response time. These results showed the quincunx structure was superior to the other models.
机译:当居里点合金的温度高于居里点温度时,磁性会丧失。居里点合金的物理特性用于快堆的被动致动关机系统(PASS),例如美国,日本,这种关机系统称为自致动关机系统(SASS)。关机设备由上组件和下组件组成。上层是磁性材料,下层是居里点合金。在正常条件下,PASS的可靠性以及灵敏度的下降取决于居里点合金的性能。设计了反应堆型实验炉及相关电路,以便在高温下进行静态和动态实验。通过反应器外部的高温实验研究了圆柱形合金的功能。结果表明,由于响应时间长,因此有必要进行改进。为了提高PASS的灵敏度,在PASS可靠的前提下,设计了不同形状的居里点合金。在异常情况下,通过有限元软件ANSYS计算了不同锐器的响应时间。比较相同条件下圆柱,梅花形和鳍片模型的响应时间,当居里点盟友的温度高于居里点温度时,梅花形结构的响应时间最短。高温实验的结果还表明,梅花形的响应时间最短。这些结果表明,梅花形结构优于其他模型。

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