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Preliminary Study of a Prismatic-Core Advanced High-Temperature Reactor Fuel Using Homogenization Double-Heterogeneous Method

机译:均质双均相法制备核芯先进的高温反应堆燃料的初步研究

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摘要

The double heterogeneity of the tristructural isotropic (TRISO) fuel in the prismatic-core advanced high-temperature reactor should be accurately and correctly modeled and analyzed, especially for a large-scale loaded with the double-heterogeneity effect. The reactivity-equivalent physical transformation method was developed and employed to enable homogenizing TRISO fuel in a high temperature reactor considering the double heterogeneity and taking into account the large problem involved in performing the whole-core burnup calculation using Monte Carlo transport codes with double-heterogeneity problems. In this work, the heterogeneous effects of a collision of probability calculation method were used to represent the effects of scattering anisotropy on the leakage rates and the isotropic streaming effects due to low optical density in the model. The WIMS and DRAGON codes have been used to perform the calculations of double heterogeneity for the TRISO fuel, fuel compact, and fuel element and the results are compared with the SERPENT Monte Carlo code.
机译:应准确,正确地建模和分析棱柱形核高级高温反应堆中三结构各向同性(TRISO)燃料的双重异质性,特别是对于具有双重异质性效应的大规模载荷。考虑到双重异质性并考虑到涉及使用具有双重异质性的蒙特卡洛输运代码进行全核燃耗计算的重大问题,开发了反应当量物理转化方法并用于使高温反应堆中的TRISO燃料均质化问题。在这项工作中,使用概率计算方法冲突的非均质效应来表示散射各向异性对泄漏率的影响,以及由于模型中的低光密度导致的各向同性流动效应。 WIMS和DRAGON代码已用于执行TRISO燃料,燃料紧凑型和燃料元件的双重异质性计算,并将结果与​​SERPENT蒙特卡洛代码进行了比较。

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