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Numerical analysis of cooldown and warmup for the Large Hadron Collider

机译:大型强子对撞机冷却和预热的数值分析

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As the baas of studies, the paper presents the inventory of components and materials for LHC magnets, especially for main dipoles and quadrupoles firstly. Then a mathematical model and analytical method for LHC transient modes, such as cooldown and warmup of a magnet, a standard cell and the eight LHC sectors, has been developed on the basis of the up-to-date layout of the LHC machine, and validated by experimental data. The model and method do not only consider the momentum and continuity equations as well as the energy equations for helium and materials, but also take into account the pressure evolution in the different headers of the cryogenic distribution line and the effect of the pressure drop across the cryogenic valves. Based on the simulation results, the heat transfer in the magnets has been studied and the transient modes optimized.
机译:作为研究的基础,本文首先介绍了LHC磁体的组件和材料清单,首先是主要偶极和四极子。然后,根据LHC机器的最新布局,开发了LHC瞬态模式的数学模型和分析方法,例如磁体的冷却和预热,标准单元和八个LHC扇区,以及通过实验数据验证。该模型和方法不仅考虑了氦和材料的动量和连续性方程以及能量方程,而且还考虑了低温分布管线不同集管中的压力演化以及整个容器内压降的影响。低温阀。根据仿真结果,研究了磁体中的热传递并优化了瞬态模式。

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