首页> 外文会议>International conference on the physics of reactors;PHYSOR 2012 >A MULTIDIMENSIONAL AND MULTIPHYSICS APPROACH TO NUCLEAR FUEL BEHAVIOR SIMULATION
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A MULTIDIMENSIONAL AND MULTIPHYSICS APPROACH TO NUCLEAR FUEL BEHAVIOR SIMULATION

机译:核燃料行为模拟的多维和多物理场方法

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Important aspects of fuel rod behavior are inherently multidimensional in addition to being complicated multiphysics problems. However, many current fuels modeling tools are strictly 2D axisymmetric or even 1.5D. This paper outlines the capabilities of a new fuel modeling tool able to analyze either 2D axisymmetric or fully 3D models. The need for multiphysics, multidimensional modeling is then demonstrated through a set of example problems. The first, a 10-pellet rodlet, demonstrates the viability of the solution method employed. This example highlights the effect of our smeared cracking model and also shows the multidimensional nature of discrete fuel pellet modeling. The second example relies on our multidimensional, multiphysics approach to analyze a missing pellet surface problem. As a final example, we show a 5-pellet rodlet simulation coupled to, lower-length-scale simulations of bubble growth.
机译:燃料棒行为的重要方面除了复杂的多物理场问题外,还固有地是多维的。但是,许多当前的燃料建模工具严格地是2D轴对称的,甚至是1.5D的。本文概述了一种新的燃料建模工具的功能,该工具能够分析2D轴对称或完全3D模型。然后通过一系列示例问题证明了对多物理场,多维建模的需求。第一个是10粒小丸子,证明了所用溶液法的可行性。该示例突出显示了涂污裂化模型的效果,还显示了离散燃料颗粒建模的多维性质。第二个示例依赖于我们的多维,多物理场方法来分析缺失的颗粒表面问题。作为最后一个示例,我们展示了5粒状小球模拟与气泡生长的较低长度比例模拟相结合。

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