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首页> 外文期刊>Annals of nuclear energy >Concept of prismatic high temperature gas-cooled reactor with SiC coating on graphite structures
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Concept of prismatic high temperature gas-cooled reactor with SiC coating on graphite structures

机译:石墨结构上具有SiC涂层的棱柱形高温气冷反应堆的概念

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摘要

A 100-MWth prismatic high temperature gas-cooled reactor was designed to be a long-life small reactor. To acquire a passive safety feature, the reactor was mainly improved with regard to graphite oxidation resistance. The concept of applying a silicon carbide coating layer on the surface of the graphite structures in the core was proposed to overcome any serious problem from graphite oxidation during unforeseen situations. However, there was concern that the deviation of neutronic and thermal properties of silicon carbide from graphite could affect the reactor operation and the heat transfer characteristics. Therefore, in this study we investigated the effects of applying a silicon carbide coating layer over the graphite structures from the neutronic and thermal-hydraulic points of view. Silicon carbide coating can lower the effective multiplication factor and shorten the reactor operating cycle, but not significantly. From the viewpoint of thermal-hydraulic operation, silicon carbide has lower thermal conductivity than that of graphite, so the layer of silicon carbide could act as a wall to keep the heat from moving across the layer. Under normal operation, the layer of silicon carbide coating had a less significant impact on the maximum fuel temperature, and the temperature remained lower than the maximum acceptable fuel temperature of 1495 ℃ for normal operation even when a thick layer of silicon carbide was applied. The silicon carbide later did have a significant impact on the increase of graphite moderating temperature. In summary, the reactor with a silicon carbide coating layer could safely operate under normal operating condition. Although the coating caused a decrease in the discharge burnup of the reactor, the improved passive safety of the reactor compensated for that disadvantage.
机译:设计了一个100兆瓦时的棱柱形高温气冷堆,作为长寿命的小型反应堆。为了获得被动安全性,反应器主要在石墨抗氧化性方面进行了改进。提出了在芯部中的石墨结构的表面上施加碳化硅涂层的概念,以克服在不可预见的情况下石墨氧化引起的任何严重问题。但是,人们担心碳化硅的中子学性质和热性质与石墨的偏离会影响反应堆的运行和传热特性。因此,在这项研究中,我们从中子学和热工学角度研究了在石墨结构上施加碳化硅涂层的效果。碳化硅涂层可以降低有效倍增系数并缩短反应堆的运行周期,但效果不明显。从热工操作的角度来看,碳化硅的导热系数要比石墨低,因此碳化硅层可以充当壁,以防止热量在层中移动。在正常运行条件下,碳化硅涂层对最高燃料温度的影响较小,即使施加了厚的碳化硅层,该温度仍低于正常运行的最高可接受燃料温度1495℃。后来,碳化硅确实对石墨调节温度的升高产生了重大影响。总之,具有碳化硅涂层的反应器可以在正常操作条件下安全地操作。尽管涂层减少了反应器的放电燃耗,但是反应器的改进的被动安全性弥补了该缺点。

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