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ASSESSMENT OF THE EFFECTS OF ANISOTROPY IN TRIGA BASED ON 3D-AGENT METHODOLOGY

机译:基于3D代理方法的TRIGA各向异性效应评估

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The neutronics characterization of The University of Utah TRIGA reactor core focused at evaluating the effects of anisotropic neutron scattering is based on 3D AGENT methodology. The AGENT methodology is based on method of characteristics with exact modeling of geometry and material distribution in the reactor cores. This feature is unique to deterministic codes worldwide and is based on the originally developed R-function solid modeler. The anisotropic correction to neutron transport in 3D hexagonal and square reactors as implemented in AGENT, provides highly accurate solution with no limitations to core configuration or the degree of anisotropic scattering terms. In testing this new methodology on TRIGA type reactors, we conclude that the AGENT deterministic solution with P_2 anisotropic scattering approximation provides fully comparable solution to the MCNP5 but with 93% CPU-time reduction.
机译:犹他大学TRIGA反应堆堆芯的中子学表征基于3D AGENT方法,致力于评估各向异性中子散射的影响。 AGENT方法是基于特征方法,对反应堆堆芯中的几何形状和材料分布进行精确建模。此功能是全球确定性代码所独有的,并且基于最初开发的R函数实体建模器。在AGENT中对3D六角形和方形反应堆中的中子输运进行各向异性校正,可提供高度准确的解决方案,而对堆芯配置或各向异性散射项的程度没有限制。在TRIGA型反应堆上测试这种新方法时,我们得出结论,具有P_2各向异性散射近似的AGENT确定性解决方案提供了与MCNP5完全可比的解决方案,但CPU时间减少了93%。

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