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Upgrade of the Gas Flow Control System of the Resistive Current Leads of the LHC Inner Triplet Magnets: Simulation and Experimental Validation

机译:LHC内三重磁铁的电阻电流引线的气体流量控制系统的升级:仿真和实验验证

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摘要

The 600 A and 120 A circuits of the inner triplet magnets of the Large Hadron Collider are powered by resistive gas cooled current leads. The current solution for controlling the gas flow of these leads has shown severe operability limitations. In order to allow a more precise and more reliable control of the cooling gas flow, new flowmeters will be installed during the first long shutdown of the LHC. Because of the high level of radiation in the area next to the current leads, the flowmeters will be installed in shielded areas located up to 50 m away from the current leads. The control valves being located next to the current leads, this configuration leads to long piping between the valves and the flowmeters. In order to determine its dynamic behaviour, the proposed system was simulated with a numerical model and validated with experimental measurements performed on a dedicated test bench.
机译:大型强子对撞机内部三重态磁铁的600 A和120 A电路由电阻性气体冷却电流引线供电。用于控制这些引线的气流的当前解决方案已经显示出严重的可操作性限制。为了更精确,更可靠地控制冷却气体流量,在LHC首次长时间停机期间将安装新的流量计。由于在靠近电流引线的区域中存在大量辐射,因此流量计将安装在距离电流引线最多50 m的屏蔽区域中。控制阀位于电流线旁边,这种配置导致阀和流量计之间的管路较长。为了确定其动态行为,使用数值模型对建议的系统进行了仿真,并通过在专用测试台上进行的实验测量对其进行了验证。

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