斯特林循环制冷机组件的快速响应温度测量

K. Kar, M. Dadd, P. Bailey, C. Stone
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引用次数: 5

摘要

传热过程不能很好理解的一个原因是,当气体温度迅速变化时,难以获得可靠的温度测量。在这里描述的工作中,使用带有3.8微米有源传感器的细丝电阻温度计测量气体温度。该设备代表了一个低温冷却器的基本元素:一个间隙密封线性压缩机和一个钢丝网再生器。两者都在接近环境温度的情况下运行,气体温度在靠近蓄热器的地方测量。测试平台在不同的体积比、频率(8-50 Hz)、气体和填充压力(1-26 bar)下运行。发现气体温度的波形在不同的流动状态下变化很大。结果表明,温度计测量的是两种不同体积的气体的温度,而气体必须在压缩空间中保持分层。从温度的循环变化中确定了流动转变。关键的雷伊……
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FAST RESPONSE TEMPERATURE MEASUREMENTS IN STIRLING CYCLE CRYOCOOLER COMPONENTS
One reason that heat transfer processes are not well understood is the difficulty of obtaining reliable temperature measurements when gas temperatures vary rapidly. In the work described here gas temperatures have been measured using a fine wire resistance thermometer with a 3.8 micron active sensor. The equipment represented the basic elements of a cryocooler: a clearance seal linear compressor and a wire mesh regenerator. Both were operated close to ambient temperature, with gas temperatures being measured close to the regenerator.The test rig was run at different volume ratios, frequencies (8–50 Hz), gases and filling pressures (1–26 bar). The waveforms of the gas temperature were found to vary dramatically for differing flow regimes. The results suggested that the thermometer was measuring the temperatures of two distinct volumes of gas, and that the gas must remain stratified in the compression space. A flow transition was identified from the cycle-by-cycle variations in temperature. The critical Rey...
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