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Cryogenic Characteristics of the ATLAS Barrel Toroid Superconducting Magnet

机译:ATLAS桶形环形超导磁体的低温特性

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摘要

ATLAS, one of the experiments of the LHC accelerator under commissioning at CERN, is equipped with a large superconducting magnet the Barrel Toroid (BT) that has been tested at nominal current (20500 A). The BT is composed of eight race-track superconducting coils (each one weights about 45 tons) forming the biggest air core toroidal magnet ever built. By means of a large throughput centrifugal pump, a forced flow (about 10 liter/second at 4.5 K) provides the indirect cooling of the coils in parallel. The paper describes the results of the measurements carried out on the complete cryogenic system assembled in the ATLAS cavern situated 100 m below the ground level. The measurements include, among other ones, the static heat loads, i.e., with no or constant current in the magnet, and the dynamic ones, since additional heat losses are produced, during the current ramp-up or slow dump, by eddy currents induced on the coil casing.
机译:ATLAS是欧洲核子研究组织(CERN)调试的LHC加速器的实验之一,它配备了一个大型超导磁体,即桶形环形线圈(BT),已在标称电流(20500 A)下进行了测试。 BT由八个赛道超导线圈(每个重约45吨)组成,构成有史以来最大的空芯环形磁铁。借助于大流量的离心泵,强制流动(在4.5 K时约为10升/秒)可以间接冷却线圈。本文介绍了在位于地面以下100 m的ATLAS洞穴中组装的完整低温系统上进行的测量结果。测量包括:静态热负荷(即磁体中没有电流或恒定电流)和动态热负荷,因为在电流上升或缓慢放电期间,由于感应的涡流会产生额外的热损失在线圈外壳上。

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