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首页> 外文期刊>Journal of nuclear engineering and radiation science >Pressurized Water Reactor Mixed Oxide/UO2 Transient Benchmark Calculations Using Monte Carlo Serpent 2 Code and Open Nodal Core Simulator ADPRES
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Pressurized Water Reactor Mixed Oxide/UO2 Transient Benchmark Calculations Using Monte Carlo Serpent 2 Code and Open Nodal Core Simulator ADPRES

机译:使用Monte Carlo Serpent 2码和开放节点核心模拟器Adpres的加压水反应器混合氧化物/ UO2瞬态基准计算

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摘要

This paper presents static and transient solutions for the pressuri:ed water reactor (PWR) MOX/UO2 transient benchmark by Serpent 2 Monte Carlo (MC) code and open nodal core simulator called Abu Dhabi Polytechnic Reactor Simulator (ADPRES). The presence of mixed oxide (MOX) fuels and burn-up variation in the benchmark pose challenges for reactor simulators due to severe flux gradient across fuel assemblies. In this work, the two-step method was used, in which the assembly level two-group constants were generated from single assembly calculations with zero net current boundary conditions using Serpent 2 Monte Carlo code, and later the core calculation was performed using ADPRES open nodal core simulator. Two types of diffusion coefficients were generated: the conventional B-1 leakage corrected and the cumulative migration method (CMM). Finally, the solutions of Serpent 2/ADPRES, including multiplication factor, power distribution, control rod (CR) worth, and critical boron concentration (CBC) using both diffusion coefficients, were compared against solutions from heterogeneous Serpent 2 calculations where the fuel and cladding are explicitly modeled. The reactor power during transients was also compared qualitatively against other nodal core simulators. The results showed that Serpent 2/ADPRES were able to predict the heterogeneous Monte Carlo solutions very well with reasonable differences. The transient solutions were also quite accurate compared to other nodal core simulators. For the diffusion coefficients comparison, it was found that the CMM diffusion coefficient provides more accurate solutions for the benchmark compared to the B-1 leakage corrected diffusion coefficients.
机译:本文采用Serpent 2 Monte Carlo(MC)程序和开放节点堆芯模拟器阿布扎比理工大学反应堆模拟器(ADPRES),给出了压水堆MOX/UO2瞬态基准的静态和瞬态解。由于燃料组件之间存在严重的通量梯度,混合氧化物(MOX)燃料的存在和基准中的燃耗变化对反应堆模拟器提出了挑战。在这项工作中,使用了两步方法,其中使用Serpent 2 Monte Carlo代码,通过零净电流边界条件下的单个组件计算生成组件级别的两组常数,然后使用ADPRES开放节点堆芯模拟器进行堆芯计算。生成了两种类型的扩散系数:常规B-1泄漏校正法和累积偏移法(CMM)。最后,将Serpent 2/ADPRES的解(包括倍增系数、功率分布、控制棒(CR)值和临界硼浓度(CBC)使用这两个扩散系数)与非均质Serpent 2计算的解(燃料和包壳明确建模)进行了比较。还将瞬态期间的反应堆功率与其他节点堆芯模拟器进行了定性比较。结果表明,Serpent 2/ADPRES能够很好地预测非均匀蒙特卡罗解,且差异合理。与其他节点堆芯模拟器相比,瞬态解也相当精确。对于扩散系数比较,发现与B-1泄漏校正扩散系数相比,CMM扩散系数为基准提供了更精确的解决方案。

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