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Characterization of Prototype Superfluid Helium Safety Relief Valves for the LHC Magnets

机译:用于LHC磁铁的原型超流氦安全泄压阀的特性

摘要

The Large Hadron Collider (LHC) at CERN will use high field superconducting magnets operating in pressurized superfluid helium (He II) at 1.9 K. Cold safety valves, with their inlet in direct contact with the He II bath, will be required to protect the cold masses in case of a magnet resistive transition. In addition to the safety function, the valves must limit their conduction heat load to the He II to below 0.3 W and limit their mass leakage when closed to below 0.01 g/s at 1.9 K with 100 mbar differential pressure. The valves must also have a high tolerance to contaminating particles in the liquid helium. The compliance with the specified performance is of crucial importance for the LHC cryogenic operation. An extensive test program is therefore being carried out on prototype industrial valves produced by four different manufacturers. The behavior of these valves has been investigated at room temperature and at 77 K. Precise heat load and mass leak measurements have been performed on a dedicated test facility at superfluid helium temperature. Results of cold and warm tests performed on as-delivered valves are presented.
机译:欧洲核子研究组织的大型强子对撞机(LHC)将使用在1.9 K加压超流体氦气(He II)中运行的高场超导磁体。需要使用冷安全阀,其进口直接与He II镀液接触,以保护磁阻转变时产生冷团块。除了安全功能外,这些阀还必须将其He II的传导热负荷限制在0.3 W以下,并在100 mbar压差下于1.9 K关闭时将其质量泄漏限制在0.01 g / s以下。阀门还必须具有高的耐污染性,以污染液氦中的颗粒。对于LHC低温操作,遵守规定的性能至关重要。因此,正在对由四个不同制造商生产的原型工业阀门进行广泛的测试程序。这些阀的性能已在室温和77 K的温度下进行了研究。精确的热负荷和质量泄漏测量已在专用流体中在超流氦温度下进行。给出了在交付的阀门上进行的冷,热测试的结果。

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