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A COUPLED FLUID-SOLID MODEL TO INVESTIGATE LEAK RATES FOR LEAK-BEFORE-BREAK ASSESSMENTS

机译:耦合流固模型以研究泄漏前泄漏评估的泄漏率

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A multiscale model is discussed here which incorporates fluid mechanics into a structural model. This is so that leak rates can be output from a crack in a finite element model without any complex meshing or post processing. The model can be implemented into any standard finite element solver, meaning leak rates can be investigated for cracks in realistic components. Crack opening area is obtained directly from the special elements that surround the crack, and leak rate is output with the solution. By adopting this holistic approach, it makes the calculation of leak rate more efficient, with the added benefit of higher accuracy. Furthermore, this provides a tool to investigate thermal interactions between the fluid and solid. Presented in this paper is a description of the physical model, and an outline of the numerical solution procedure. Leak rates are also discussed for the case of crack in a plate. The numerical tool provides an effective way of coupling a fluid model with microscale effects, to a macroscale solid model. Investigations using this new method have the potential to reduce uncertainty in leak rate evaluation. Also, by reducing the uncertainty, it is suggested that there would be an increase in the number of situations where Leak-before-Break could be applied in Nuclear Power Plants.
机译:这里讨论了多尺度模型,该模型将流体力学纳入了结构模型。这样一来,泄漏率就可以从有限元模型中的裂缝中输出,而无需进行任何复杂的网格划分或后处理。该模型可以在任何标准的有限元求解器中实现,这意味着可以研究泄漏率,以求出实际部件中的裂纹。裂缝的开口面积直接来自围绕裂缝的特殊元素,泄漏率随溶液一起输出。通过采用这种整体方法,可以使泄漏率的计算更加有效,并具有更高的准确性。此外,这提供了一种研究流体与固体之间的热相互作用的工具。本文介绍的是物理模型的描述,以及数值求解过程的概述。还讨论了板裂纹情况下的泄漏率。数值工具提供了一种将具有微观效果的流体模型耦合到宏观实体模型的有效方法。使用这种新方法进行的调查有可能减少泄漏率评估的不确定性。另外,通过减少不确定性,建议增加在核电站中可以应用先漏漏的情况的数量。

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