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Measurement of cryogenic regenerator characteristics under oscillating flow and pulsating pressure

机译:振荡流量和脉动压力下低温蓄冷器特性的测量

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This paper describes an experimental apparatus developed to investigate detailed thermal and hydrodynamic characteristics of a regenerator at cryogenic temperature under oscillating flow and pulsating pressure conditions. Cold-end of the regenerator is maintained at approximately 85 K for G-M cryocooler type and 100 K for Stirling cryocooler type operations by means of two cryogenic heat exchangers. At both ends of the regenerator, fine hot wire probes are installed to measure the fast oscillating gas temperature and mass flow rate. The gas temperature sensors installed very close to the ends of the regenerator matrix assure precise gas temperature measurement in the regenerator. In this study, thermal and hydrodynamic behaviors of the well-defined wire-screen regenerator are fully characterized. First, pressure drop characteristics are discussed for different frequencies under room temperature. Second, ineffectiveness of the regenerator is obtained for different cold-end temperatures.
机译:本文介绍了一种实验装置,旨在研究振荡温度和脉动压力条件下低温下蓄热器的详细热力学和流体力学特性。通过两个低温热交换器,对于G-M低温冷却器类型,再生器的冷端保持在约85 K,对于斯特林低温冷却器类型,再生器的冷端保持在100K。在回热器的两端,安装了细小的热线探针,以测量快速振荡的气体温度和质量流量。气体温度传感器安装在离再生器矩阵末端很近的位置,以确保在再生器中精确测量气体温度。在这项研究中,充分定义了明确定义的丝网筛蓄热器的热和流体动力学行为。首先,讨论了室温下不同频率的压降特性。第二,对于不同的冷端温度,再生器无效。

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