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A cryogenic high-Reynolds turbulence experiment at CERN

机译:CERN的低温高雷诺瓦尔湍流实验

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The potential of cryogenic helium flows for studying high-Reynolds number turbulence in the laboratory has been recognised for a long time and implemented in several small-scale hydrodynamic experiments. With its large superconducting particle accelerators and detector magnets, CERN, the European Laboratory for Particle Physics, has become a major world center in helium cryogenics, with several large helium refrigerators having capacities up to 18 kW @ 4.5 K. Combining a small fraction of these resources with the expertise of three laboratories at the forefront of turbulence research, has led to the design, swift implementation, and successful operation of GReC (Grands Reynolds Cryogeniques) a large axisymmetric turbulent-jet experiment. With flow-rates up to 260 g/s of gaseous helium at ≈5 K and atmospheric pressure, Reynolds numbers up to 10~7 have been achieved in a 4.6 m high, 1.4 m diameter cryostat. This paper presents the results of the first runs and describes the experimental set-up comprehensively equipped with "hot" wire micro-anemometers, acoustic scattering vorticity measurements and a large-bandwidth data acquisition system.
机译:在实验室中研究高雷诺数湍流的低温氦气流动已经识别了很长时间并在几种小型流体动力学实验中实施。凭借其大型超导粒子促进剂和探测器磁铁,CERN,欧洲粒子物理学实验室,已成为氦低温的主要世界中心,其中几个大氦冰箱,具有高达18 kW @ 4.5 K的能力。结合了一小部分资源与三个实验室的专业知识在湍流研究的最前沿,导致了GREC的设计,迅速实现和成功运行(Grands Reynolds低温)是一个大的轴对称湍流喷射试验。流量速率高达260g / s的气态氦,≈5k和大气压,雷诺数高达10〜7的速度已经在4.6米高,1.4米直径的低温恒温器中实现。本文介绍了第一次运行的结果,并描述了综合配备有“热”线微型风速计,声散射涡度测量和大带宽数据采集系统的实验装置。

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