首页> 外文会议>IIR International Conference on Thermophysical Properties and Transfer Processes of Refrigerants >INVESTIGATION OF THE SOLID-LIQUID PHASE EQUILIBRIA FOR CRYOGENIC ARGON-FLUOROCARBON MIXED REFRIGERANT
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INVESTIGATION OF THE SOLID-LIQUID PHASE EQUILIBRIA FOR CRYOGENIC ARGON-FLUOROCARBON MIXED REFRIGERANT

机译:低温氩氟碳混合制冷剂的固液相平衡研究

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Mixed refrigerant (MR) Joule Thomson (JT) refrigerators are superior to pure refrigerant JT refrigerators in terms of their available cooling temperature range and cooling capacity. However, at cryogenic temperature below 120 K, non-flammable MRs such as argon-fluorocarbon mixtures may freeze due to their higher freezing temperatures than conventional flammable MRs. Therefore, the freezing temperature of the non-flammable MR should be investigated in advance to employ them in cryogenic MR JT refrigerators. In this paper, we investigate the solid-liquid phase equilibria (i.e. freezing temperature) of the argon-fluorocarbon mixture which consists of argon (Ar), R14 (CF4), R218 (C_3F_8) and R23 (CHF_3). These quaternary mixtures were carefully selected to evaluate the lowest operation temperature of the MR JT refrigerator which use them. The 6 cases of molar composition of the mixtures were examined by means of the regular solution theory and the visualization apparatus to find the lowest temperature without freezing. For the experiment, the image for phase change and temperature measurement of the target MR were acquired simultaneously by camcorder and temperature sensors during the melting process. The entire experimental results were obtained between 115 K and 120 K which show significant difference with the estimated freezing temperatures by regular solution theory. These results may originate from relatively high enthalpy of fusion of R23 and the lack of binary interaction parameter. We suggest that the selected quaternary mixtures be applied to MR JT refrigerators for cooling temperature above 120 K.
机译:混合制冷剂(MR)焦耳汤姆森(JT)冰箱在其可用的冷却温度范围和冷却能力方面优于纯制冷剂JT冰箱。然而,在低于120k的低温温度下,由于其比常规易燃的MRS更高的冻结温度,诸如氩气 - 氟碳混合物的不易燃MRS可以冷冻。因此,应预先研究不易燃MR的冷冻温度,以在低温JT冰箱中使用它们。在本文中,我们研究了由氩气(Ar),R14(CF4),R218(C_3F_8)和R23(CHF_3)组成的氩氟碳混合物的固体相平(即冷冻温度)。仔细选择这些季次混合物以评估使用它们的MR JT冰箱的最低操作温度。通过定期溶液理论和可视化装置检查混合物的6例摩尔组合物,以找到不冷冻的最低温度。对于实验,通过在熔化过程中同时通过摄像机和温度传感器来同时获得用于相变和温度测量的图像。在115 k和120 k之间获得了整个实验结果,其通过定期解决方案理论与估计的冰箱温度显示出显着差异。这些结果可能来自R23融合的相对高的焓和缺乏二元交互参数。我们建议将所选择的四元混合物应用于JT冰箱MR用于冷却温度超过120 k。

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