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Safety analysis in large volume vacuum systems like tokamak: Experiments and numerical simulation to analyze vacuum ruptures consequences

机译:托卡马克等大型真空系统的安全性分析:用于分析真空破裂后果的实验和数值模拟

摘要

The large volume vacuum systems are used in many industrial operations and research laboratories. Accidents in these systems should have a relevant economical and safety impact. A loss of vacuum accident (LOVA) due to a failure of the main vacuum vessel can result in a fast pressurization of the vessel and consequent mobilization dispersion of hazardous internal material through the braches. It is clear that the influence of flow fields, consequence of accidents like LOVA, on dust resuspension is a key safety issue. In order to develop this analysis an experimental facility is been developed: STARDUST. This last facility has been used to improve the knowledge about LOVA to replicate a condition more similar to appropriate operative condition like to kamaks. By the experimental data the boundary conditions have been extrapolated to give the proper input for the 2D thermofluid-dynamics numerical simulations, developed by the commercial CFD numerical code. The benchmark of numerical simulation results with the experimental ones has been used to validate and tune the 2D thermofluid-dynamics numerical model that has been developed by the authors to replicate the LOVA conditions inside STARDUST. In present work, the facility, materials, numerical model, and relevant results will be presented. © 2014 A. Malizia et al.
机译:大容量真空系统已在许多工业运营和研究实验室中使用。这些系统中的事故应产生相关的经济和安全影响。由于主真空容器的故障而导致的真空损失事故(LOVA)可能导致容器的快速加压,并因此导致危险内部材料通过支管的移动。显然,流场(LOVA之类事故的后果)对粉尘再悬浮的影响是关键的安全问题。为了进行这种分析,开发了一种实验设备:STARDUST。这最后的设施已被用来提高关于LOVA的知识,以复制一种条件,该条件更类似于适当的操作条件,例如皮船。通过实验数据,已经推断出边界条件,从而为由商业CFD数值代码开发的2D热流体动力学数值模拟提供了适当的输入。数值模拟结果与实验结果的基准已用于验证和调整作者开发的二维热流体动力学数值模型,以复制STARDUST内的LOVA条件。在目前的工作中,将介绍设备,材料,数值模型和相关结果。 ©2014 A. Malizia等。

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