高温反应堆中ifba包覆TRISO燃料颗粒的二维全堆芯分析

M. Alrwashdeh, S. Alameri
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引用次数: 5

摘要

棱镜堆芯先进高温堆(PAHTR)是一种极高温堆型技术,被国际论坛列为第四代最有前途的堆型技术之一。新技术设计具有防扩散、安全、经济、高效、长燃料循环等特点。本文采用连续能量蒙特卡罗方法,利用Serpent蒙特卡罗代码,利用高保真二维模型捕获所有必要的反应堆物理参数,并将其应用于考虑双重非均质效应的装载三结构各向同性(TRISO)粒子的大型反应堆堆芯。这些分析是针对PAHTR反应堆堆芯进行的,该堆芯采用了一种新的创新理念,即在石墨基体中嵌入TRISO颗粒燃料,添加整体可燃吸收剂(IFBA)作为指定厚度的附加涂层。添加IFBA涂层可以压缩循环开始时的过量反应性,并延长燃耗周期。额外的IFBA涂层层位于燃料核的外表面,并被组成TRISO燃料颗粒的缓冲层覆盖。对三iso粒子单元电池和IFBA涂层均匀分布的全芯进行了中子计算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-Dimensional Full Core Analysis of IFBA-Coated TRISO Fuel Particles in Very High Temperature Reactors
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 IV 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.
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