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Quench protection heater studies for the 1-m model magnets for the LHC low-/spl beta/ quadrupoles

机译:用于LHC低-/ spl beta /四极的1-m型磁体的淬火保护加热器研究

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In superconducting magnets with large energies, quench protection heaters (QPHs) are necessary to prevent localized quenches. If the full energy of a magnet is dissipated into a small volume, the magnet may suffer irreparable damage. The QPHs are used to heat the surface of the coil to increase the volume of the normal zone so the heat is dissipated over a larger area. As a result, the maximum temperature after a quench will be reduced. The KEK low-/spl beta/ quadrupole magnets for the Large Hadron Collider (LHC) have four QPHs on the outer surface of the coil. Several aspects of the performance of the QPHs for the KEK-LHC insertion quadrupole magnets have been studied. The time from firing the QPHs to quench vs. QPH-input-energy, the effects of varying quench-detection time on the magnet power supply, and the results of a normal training quench with no dump resistor and using the QPHs are reported and compared to a quench simulation code.
机译:在具有大能量的超导磁体中,必须使用淬火保护加热器(QPH)来防止局部淬火。如果将磁体的全部能量耗散到很小的体积,则磁体可能会遭受无法弥补的损坏。 QPH用于加热线圈表面以增加正常区域的体积,因此热量会散布在更大的区域上。结果,淬火后的最高温度将降低。大型强子对撞机(LHC)的KEK低/ splβ/四极磁体在线圈的外表面有四个QPH。已经研究了KEK-LHC插入四极磁体的QPH性能的几个方面。报告并比较了从触发QPH到淬灭的时间与QPH输入能量之间的关系,变化的淬灭检测时间对磁体电源的影响,以及没有卸载电阻和使用QPH的正常训练淬火的结果。至急停模拟代码。

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