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Pressure drop of two-phase helium along long cryogenic flexible transfer lines to support a superconducting RF operation at its cryogenic test stand

机译:沿长低温柔性传输线的两相氦的压降以在其低温测试台上支持超导RF操作

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摘要

BackgroundEstablishing a stand-alone cryogenic test stand is of vital importance to ensure the highly reliable and available operation of superconducting radio-frequency module in a synchrotron light source. Operating a cryogenic test stand relies strongly on a capability to deliver two-phase helium along long cryogenic transfer lines. A newly constructed cryogenic test stand with flexible cryogenic transfer lines of length 220 m at National Synchrotron Radiation Research Center is required to support a superconducting radio-frequency module operated at 126.0 kPa with a 40-W dynamic load for a long-term reliability test over weeks. It is designed based on a simple analytical approach with the introduction of a so-called tolerance factor that serves to estimate the pressure drops in transferring a two-phase helium flow with a substantial transfer cryogenic heat load. Tolerance factor 1.5 is adopted based on safety factor 1.5 commonly applied in cryogenic designs to estimate the total mass flow rate of liquid helium demanded. A maximum 60-W dynamic load is verified with experiment measured with heater power 60 W instead after the cryogenic test stand has been installed.
机译:背景技术建立独立的低温测试台对于确保同步加速器光源中超导射频模块的高度可靠和可用操作至关重要。操作低温试验台非常依赖于沿长的低温传输线输送两相氦气的能力。国家同步辐射研究中心需要一个新建的低温测试台,该传输台具有长度为220m的柔性低温传输线,以支持工作于126.0kPa,动态负载为40W的超导射频模块,以便在整个系统上进行长期可靠性测试周。它是基于一种简单的分析方法进行设计的,其中引入了所谓的容差因数,该容差因数用于估算在传递两相氦气时传递大量低温热负荷时的压降。在低温设计中通常采用的安全系数1.5的基础上采用公差系数1.5来估算所需液氦的总质量流量。在安装了低温测试台之后,可以通过使用60W加热器功率测量的实验来验证最大60W的动态负载。

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