首页> 外文会议>International conference on the physics of reactors;PHYSOR 2012 >MODELING CANDU-6 LIQUID ZONE CONTROLLERS FOR EFFECTS OF THORIUM-BASED FUELS
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MODELING CANDU-6 LIQUID ZONE CONTROLLERS FOR EFFECTS OF THORIUM-BASED FUELS

机译:建模CANDU-6液区控制器,研究T基燃料的作用

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We use the DRAGON code to model the CANDU-6 liquid zone controllers and evaluate the effects of thorium-based fuels on their incremental cross sections and reactivity worth. We optimize both the numerical quadrature and spatial discretization for 2D cell models in order to provide accurate fuel properties for 3D liquid zone controller supercell models. We propose a low computer cost parameterized pseudo-exact 3D cluster geometries modeling approach that avoids tracking issues on small external surfaces. This methodology provides consistent incremental cross sections and reactivity worths when the thickness of the buffer region is reduced. When compared with an approximate annular geometry representation of the fuel and coolant region, we observe that the cluster description of fuel bundles in the supercell models does not increase considerably the precision of the results while increasing substantially the CPU time. In addition, this comparison shows that it is imperative to finely describe the liquid zone controller geometry since it has a strong impact of the incremental cross sections. This paper also shows that liquid zone controller reactivity worth is greatly decreased in presence of thorium-based fuels compared to the reference natural uranium fuel, since the fission and the fast to thermal scattering incremental cross sections are higher for the new fuels.
机译:我们使用DRAGON代码对CANDU-6液区控制器进行建模,并评估of基燃料对其增量截面和反应性价值的影响。我们为2D单元模型优化了数值正交和空间离散化,以便为3D液体区域控制器超级单元模型提供准确的燃料属性。我们提出了一种低成本的计算机化参数化伪精确3D群集几何建模方法,该方法避免了在小外表面上跟踪问题。当减小缓冲区的厚度时,该方法提供了一致的增量横截面和有价值的反应性。当与燃料和冷却剂区域的近似环形几何表示形式进行比较时,我们观察到超级电池模型中燃料束的集群描述不会显着提高结果的精度,同时会显着增加CPU时间。另外,该比较表明,必须精确描述液体区域控制器的几何形状,因为它对增量横截面有很大的影响。本文还表明,与基于参考的天然铀燃料相比,在存在based基燃料的情况下,液区控制器的反应性价值大大降低,因为新燃料的裂变和快速至热散射的增量截面更高。

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