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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Completion of superconducting magnet production at BNL for the HERA luminosity upgrade
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Completion of superconducting magnet production at BNL for the HERA luminosity upgrade

机译:BNL超导磁体生产完成,用于HERA发光度升级

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Brookhaven National Laboratory (BNL) has completed production of the superconducting multi-function magnets that are now installed as part of the HERA luminosity upgrade at DESY. The magnets, cryostats, and lead assemblies were designed and built at BNL. To fit inside the existing detectors, the coils plus cryostat structure had to meet a challenging radial budget (e.g., 39 mm horizontally). Two types of magnets were needed and three of each type were built. Each magnet contained normal and skew quadrupole, normal and skew dipole, and sextupole coils. The magnets operate in the /spl sim/1.5 T solenoid field of a detector. The quadrupole coils produce gradients up to 13 T/m. The dipole coils generate fields up to 0.3 T. Coils were wound under computer control using either seven-strand round cable or a single strand. To simultaneously avoid excessive synchrotron radiation background scattered from the beam pipe and yet have a small cryostat, one type of magnet used a tapered coil structure. The cryogenic system incorporates cooling with both 40 K helium and supercritical helium. All of the coils were tested in liquid helium in a vertical dewar. Quench test results have been excellent. The field quality of the magnets has met the stringent requirements imposed on interaction region magnets. One magnet of each type was tested at BNL as a completed assembly to verify the performance of the leads and cryostats. Two of each type were tested at DESY and then installed in the Zeus and H1 experiments. The remaining magnets are spares. Final results of quench testing, field quality measurements and cryogenic performance are reported.
机译:布鲁克海文国家实验室(BNL)已完成超导多功能磁体的生产,这些磁体现已作为DESY的HERA光度升级的一部分进行安装。磁铁,低温恒温器和导线组件是在BNL设计和制造的。为了安装在现有的检测器中,线圈和低温恒温器结构必须满足具有挑战性的径向预算(例如,水平39 mm)。需要两种类型的磁体,每种类型都需要构建三种。每个磁体包含法向和偏斜四极,法向和偏斜偶极和六极线圈。磁铁在检测器的/ spl sim / 1.5 T螺线管磁场中工作。四极线圈产生的梯度高达13 T / m。偶极线圈产生的磁场最高达0.3T。线圈在计算机控制下使用七股圆形电缆或单股绕制。为了同时避免过多的同步加速器辐射本底从束管中散射而又具有小的低温恒温器,一种磁体使用了锥形线圈结构。低温系统结合了40 K氦气和超临界氦气的冷却功能。所有线圈均在垂直杜瓦瓶中的液氦中进行了测试。淬火测试结果非常好。磁体的磁场质量满足了对相互作用区域磁体的严格要求。在BNL,每种磁体都作为一个完整的组件进行了测试,以验证导线和低温恒温器的性能。每种类型中的两种在DESY进行了测试,然后安装在Zeus和H1实验中。剩下的磁铁是备用的。报告了淬火测试,现场质量测量和低温性能的最终结果。

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