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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Finite Element Modeling in 3D of the Impact of Superfluid Helium Filled Micro-Channels on the Heat Transfer through LHC Type Cable Insulation
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Finite Element Modeling in 3D of the Impact of Superfluid Helium Filled Micro-Channels on the Heat Transfer through LHC Type Cable Insulation

机译:LHC型电缆绝缘对超流体氦填充微通道对传热的影响的3D有限元建模

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摘要

For a future luminosity upgrade of CERN's Large Hadron Collider, a drastically improved heat removal in the inner triplet quadrupole magnets is required. One of the necessary improvements involves the cable insulation. A porous all-polyimide insulation scheme has been proposed recently. Essentially the insulation features a network of micro channels filled with superfluid helium that significantly increases the heat transfer through the insulation layer. A three dimensional Finite Element model required to simulate and study the enhanced heat transfer through the micro channels is presented here. The thermal coupling between heated cable and helium as well as the heat flux through the micro-channels are investigated. The model is validated by comparison of results with published measured data. Finally a sensitivity analysis is performed concerning the stability of the cables in magnet windings.
机译:为了将来对欧洲核子研究组织的大型强子对撞机的发光度进行升级,需要大大改善内部三重态四极磁体的散热。必要的改进之一是电缆绝缘。最近已经提出了一种多孔的全聚酰亚胺绝缘方案。绝热层本质上具有微通道网络,其中充满了超流体氦气,大大增加了通过绝热层的热传递。本文介绍了一个三维有限元模型,用于模拟和研究通过微通道的强化传热。研究了加热的电缆和氦之间的热耦合以及通过微通道的热通量。通过将结果与已发布的测量数据进行比较来验证该模型。最后,进行了有关电磁线圈中电缆稳定性的灵敏度分析。

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