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TWO-DIMENSIONAL FULL CORE ANALYSIS OF IFBA-COATED TRISO FUEL PARTICLES IN VERY HIGH TEMPERATURE REACTORS

机译:IFBA涂覆的Triso燃料颗粒在非常高温反应器中的二维全核分析

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The Prismatic-core Advanced High Temperature Reactor (PAHTR) is a very high temperature reactor type which is one of promising reactor type technologies classified as Generation TV by the International Forum. The new technology designs are identified as being proliferation resistant, safe, economical, efficient, and long fuel cycle. In this paper, the continuous-energy Monte Carlo method is capable of capturing all of the necessary reactor physics parameters using high fidelity two dimensional model with Serpent Monte Carlo code, and applied for a large scale reactor core loaded with TRi-structural ISOtropic (TRISO) particle by taking into account the double heterogeneity effect. These analyses were performed for PAHTR reactor core that utilizes TRISO particles fuel embedded in graphite matrix by applying a new innovative idea of adding Integral Fuel Burnable Absorber (IFBA) as an additional coating layer with a designated thickness. Adding IFBA coating could lead to compressed excess reactivity at the Beginning of Cycle (BOC), and extended burnup cycle. The additional IFBA coating layer is placed in the outer surface of the fuel kernel and covered by the buffer layers that compose the TRISO fuel particle. Neutronic calculations were performed for both TRISO particle unit cell and for full core with homogenous distribution of IFBA coating.
机译:棱柱芯先进的高温反应器(Pahtr)是一种非常高的温度反应器类型,是国际论坛归类为电视的大型反应器型技术之一。新技术设计被确定为耐扩散,安全,经济,高效和长的燃料循环。在本文中,连续能量蒙特卡罗方法能够使用具有蛇蒙特卡罗码的高保真二维模型来捕获所有必要的反应器物理参数,并施加加入三结构各向同性的大规模反应器核心(Triso )通过考虑双重异质性效果来粒子。对Pahtr反应器核进行这些分析,其利用石墨矩阵中嵌入的Triso颗粒燃料通过应用添加整体燃料燃烧吸收(IFBA)作为具有指定厚度的附加涂层的新的创新思想。添加IFBA涂层可能导致循环开始(BOC)和延长的燃烧周期的压缩过度反应性。将附加的IFBA涂层置于燃料孔的外表面上,并被构成三汽油颗粒的缓冲层覆盖。对三胞型颗粒单元电池和全芯进行中核计算,具有IFBA涂层的均匀分布。

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