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A Custom Online Ultrasonic Gas Mixture Analyzer With Simultaneous Flowmetry, Developed for the Upgraded Evaporative Cooling System of the ATLAS Silicon Tracker

机译:为ATLAS硅追踪器的升级版蒸发冷却系统开发的具有同步流量计量的定制在线超声混合气体分析仪

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We describe a combined ultrasonic instrument for continuous gas flow measurement and simultaneous real-time binary gas mixture analysis. In the instrument, sound bursts are transmitted in opposite directions, which may be aligned with the gas flow path or at an angle to it, the latter configuration being the best adapted to high flow rates. The combined flow measurement and mixture analysis algorithm exploits the phenomenon whereby the sound velocity in a binary gas mixture at known temperature and pressure is a unique function of the molar concentration of the two components. The instrument is central to a possible upgrade to the present ATLAS silicon tracker cooling system in which octafluoropropane (${hbox{C}}_{3} {hbox{F}}_{8}$) evaporative cooling fluid would be replaced by a blend containing up to 25% hexafluoroethane ( ${hbox{C}}_{2}{hbox{F}}_{6}$). The instrument has been developed in two geometries following computational fluid dynamics studies of various mechanical layouts. An instrument with 45 $^{circ}$ crossing angle has been installed for commissioning in the ATLAS silicon tracker cooling system. It can be used in gas flows up to 20$thinspace$ 000 l.min$^{-1}$ and has demonstrated a flow resolution of 2.3% of full scale for linear flow velocities up to 10 m.s$^{-1}$ in preliminary studies with air. Other instruments are currently used to detect low levels of ${hbox{C}}_{3}{hbox{F}}_{8}$ vapor leaking into the ${hbox{N}}_{2}$ environmental gas surrounding the ATLAS silicon tracker. A long-duration continuous study of more than a year has demonstrated a sensitivity to mixture variation of better than 5.10$^{-5}$ .
机译:<?Pub Dtl?>我们描述了一种用于连续气体流量测量和同时实时二元气体混合物分析的组合超声仪器。在该仪器中,声音突发沿相反的方向传输,该方向可能与气流路径对齐或与其成一定角度,后一种配置最适合高流速。组合的流量测量和混合物分析算法利用了一种现象,即在已知温度和压力下,二元混合气中的声速是两种组分摩尔浓度的唯一函数。该仪器是对现有ATLAS硅跟踪器冷却系统进行可能升级的关键,在该系统中,八氟丙烷( $ {hbox {C}} _​​ {3} {hbox { F}} _ {8} $ $ {hbox {C}} _​​ {2} {hbox {F}} _ {6} $ )。在对各种机械布局进行计算流体动力学研究之后,该仪器已开发为两种几何形状。在ATLAS硅跟踪器冷却系统中已安装了具有45 $ ^ {circ} $ 交叉角的仪器,用于调试。最多可用于20 $ thinspace $ 000 l.min < tex Notation =“ TeX”> $ ^ {-1} $ ,对于高达10 ms的线性流速,已证明其流分辨率为满量程的2.3%。在空气中进行初步研究的 $ ^ {-1} $ 。当前,其他工具也用于检测 $ {hbox {C}} _​​ {3} {hbox {F}} _ {8} $的低水平 蒸气泄漏到 $ {hbox {N}} _ {2} $ 环境气体中ATLAS硅跟踪器。长达一年多的长期持续研究表明,对混合物变化的敏感度优于5.10 <公式> =“ inline”> $ ^ {-5} $ < / formula>。

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