Simulasi Pelelehan Freeze Plug Termodifikasi pada Molten Salt Reactor Menggunakan Metode Moving Particle Semi-implicit

Banafsaj Fatiya Nabiilah, Asril Pramutadi Andi Mustarib, Y. Yulianto
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Abstract

In the Molten Salt Reactor, the freeze plug is one of the components that plays an important role when a reactor accident occurs. In designing the freeze plug, the selection of the constituent material is based on the ability of the material to spread the heat. Therefore, studies on material selection are needed to provide information regarding freeze plug design. The modified freeze plug melting process has been simulated using the Moving Particle Semi-Implicit method. This study aims to observe the behavior of the modified freeze plug melting phenomena and to see the effect of the conductivity value on the melting process. The alloys used around frozen salts with different thermal conductivity are Hastelloy-N, Heynes-242, and ODS Alloy (MA754). The simulation results show that the time required for frozen salt to melt in Hastelloy-N, Heynes-242 variations , and ODS Alloy (MA754) are 12.3 seconds each; 12.7 seconds; and 24.3 seconds. The results obtained explain that freeze plugs with metal alloys that have the highest thermal conductivity require a shorter time to reach the melting point. This shows that the greater the thermal conductivity value, the easier it is to spread heat to the alloy that hits the frozen salt.
基于半隐式粒子移动法的熔盐反应器除堵改造模拟
在熔盐堆中,冻结塞是反应堆事故发生时起重要作用的部件之一。在设计冷冻塞时,组成材料的选择是基于材料传播热量的能力。因此,需要对材料选择进行研究,以提供有关冷冻塞设计的信息。采用移动粒子半隐式方法对改进的冻塞熔化过程进行了模拟。本研究旨在观察改性冷冻塞熔化现象的行为,并观察电导率值对熔化过程的影响。在具有不同导热性的冷冻盐周围使用的合金有Hastelloy-N、Heynes-242和ODS合金(MA754)。模拟结果表明,在Hastelloy-N、Heynes-242和ODS合金(MA754)中,冷冻盐融化所需的时间分别为12.3秒;12.7秒;24.3秒。所获得的结果解释了具有最高导热率的金属合金的冷冻塞需要更短的时间才能达到熔点。这表明,热导率值越大,就越容易将热量传播到撞击冷冻盐的合金上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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