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RPC performances and gas quality in a closed loop gas systemfor the new purifiers configuration at LHC experiments

机译:LHC实验中用于新型净化器配置的闭环气体系统中的RPC性能和气体质量

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摘要

In the ATLAS and CMS experiments the RPC detector covers alarge surface of about 4000 m2 equivalent to 14 m3 of gasvolume for each system. RPCs are operated using a C2H2F4(R134a) based humidified gas mixture. A flow of the order of onevolume exchange per hour is needed for the detector operation. Thesecharacteristics make the closed-loop circulation unavoidable.Nowadays the gas systems are operated with a 90–95% re-circulationfactor.Results from tests performed over the past few years have shown howthe molecules in the gas mixture are broken up under the action ofthe high electric field and the high radiation background during LHCoperation.Several RPCs were operated at the CERN Gamma Irradiation Facility ina high radiation environment in order to observe the production oftypical impurities and to find an optimal purifiers configurationfor their absorption. During the test, the detector performanceswere monitored in terms of current stability and HPL resistivity.
机译:在ATLAS和CMS实验中,RPC检测器覆盖了约4000 m2的大表面,相当于每个系统的14 m3气体体积。 RPC使用基于C2H2F4(R134a)的加湿气体混合物进行操作。对于检测器操作,每小时需要进行一次体积交换的流量。这些特性使闭环循环不可避免。如今,气体系统的循环系数为90%到95%。过去几年的测试结果表明,在高压气体的作用下,气体混合物中的分子是如何分解的。在高辐射环境下,CERN伽马辐照设施运行了多个RPC,以观察典型杂质的产生并找到最佳的净化器配置以吸收它们。在测试过程中,将根据电流稳定性和HPL电阻率对检测器性能进行监控。

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