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Development Of A Computer Code System For The Analysis Of Prism And Pebble Type Vhtr Cores

机译:棱镜和卵石型Vhtr铁心分析计算机代码系统的开发

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Korea Atomic Energy Research Institute (KAERI) is developing a new computer code system for an analysis of very high temperature gas-cooled reactor (VHTR) cores based on the existing HELIOS/MASTER code system. Several methodologies were developed in order for the original light water reactor (LWR) code system to treat the unique VHTR characteristics easily such as the so-called double-heterogeneity problem, the effects of a spectrum shift and a thermal up-scattering, a strong fuel/reflector interaction, etc. The method of a reactivity-equivalent physical transformation (RPT) and the equivalent cylindrical fuel (ECF) model are proposed to transform the double-heterogeneous fuel problem into a single-heterogeneous one in a cylindrical coordinate for both a prismatic fuel and a pebble-bed fuel. An eight energy group structure with appropriate group boundaries has been constructed in the MASTER diffusion nodal calculation, within which the issues of a spectrum shift and a thermal up-scattering are resolved. The concern about a strong fuel/reflector interaction can be handled easily by applying the equivalence theory to a simple one-dimensional spectral geometry consisting of the fuel and reflector regions. By combining all the methodologies described above, a well-known two-step core analysis procedure has been established, where HELIOS is used for the transport lattice calculation and MASTER for the 3-D diffusion nodal core calculation. The applicability of our code system was tested against several core benchmark problems. The results of these benchmark tests revealed that our code system is very accurate and practical for an analysis of both the prismatic and pebble-bed reactor cores.
机译:韩国原子能研究所(KAERI)正在开发一种新的计算机代码系统,该系统将基于现有的HELIOS / MASTER代码系统对超高温气冷堆(VHTR)堆芯进行分析。为了使原始的轻水堆(LWR)代码系统能够轻松地处理独特的VHTR特性,开发了几种方法,例如所谓的双异质性问题,频谱偏移和热向上散射的影响,提出了一种反应活性当量物理转换(RPT)方法和等效圆柱燃料(ECF)模型,以将双非均质燃料问题在圆柱坐标系中转换为单非均质燃料问题。棱柱形燃料和卵石床燃料。在MASTER扩散节点计算中,已经构造了具有适当的组边界的八个能量组结构,在其中解决了光谱偏移和热向上散射的问题。通过将等价理论应用于由燃料和反射器区域组成的简单一维光谱几何结构,可以轻松解决有关燃料/反射器之间相互作用的问题。通过结合上述所有方法,已建立了众所周知的两步岩心分析程序,其中HELIOS用于传输晶格计算,MASTER用于3-D扩散节点岩心计算。我们的代码系统的适用性已针对几个核心基准测试问题进行了测试。这些基准测试的结果表明,我们的代码系统对于棱柱和卵石床反应堆堆芯的分析都是非常准确和实用的。

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