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Thermohydraulics of quenches and helium recovery in the LHC prototype magnet strings

机译:LHC原型磁铁弦中的淬火和氦气回收的热工水力

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In preparation for the Large Hadron Collider project, a 42.5 m-long prototype superconducting magnet string, representing a half-cell of the machine lattice, has been built and operated. A series of tests was performed to assess the thermohydraulics of resistive transitions (quenches) of the superconducting magnets. These measurements provide the necessary foundation for describing the observed evolution of the helium in the cold mass and formulating a mathematical model based on energy conservation. The evolution of helium after a quench simulated with the model reproduces the observations. We then extend the simulations to a full LHC cell, and finally analyse the recovery of helium discharged from the cold mass. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 10]
机译:为准备大型强子对撞机项目,已建造并运行了一个42.5 m长的原型超导磁体弦,该磁体弦代表了机器晶格的一个半单元。进行了一系列测试,以评估超导磁体的电阻转变(淬火)的热工水力。这些测量提供了必要的基础,用于描述观察到的氦在冷块中的演变并基于能量守恒制定数学模型。用该模型模拟的淬火后氦气的析出再现了观察结果。然后,我们将模拟扩展到一个完整的LHC电池,最后分析从冷块中排放的氦气的回收率。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:10]

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