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不同冷冻润滑油对HFO1234yf溶解吸收特性的研究 被引量:1

Investigation of solubility behavior between HFO1234yf and lubricants
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摘要 在原有的溶解度实验台位基础上,研制了一套基于可视等体积饱和法的制冷剂/润滑油溶解实验系统,增加可视窗口的实验本体、调整恒温系统以及改进搅拌系统。采用新研制的实验系统,实验研究了温度范围为283.15~348.15K制冷剂HFO1234yf与角鲨烷的溶解吸收特性,并采用PR状态方程和HVOS混合规则及活度系数NRTL模型对实验结果进行了关联,计算值和实验值的平均相对误差为1.22%。此外,温度范围为283.15~323.15K内发现了不互溶分层的现象。 On the basis of the original solubility experimental system, a new experimental system using the visual isochoric method was developed to measure the solubility for a refrigerant and a lubricant. In new experimental system, visual experimental cell was added, thermostatic system was adjusted, and magnetic stirring system was modified. Solubilities of HFO1234yf in squalane was measured between 283.15 K and 348.15 K. The experimental data were correlated by PR equation of state with HVOS mixing rule in which the excess Gibbs free energy was represented by the NRTL equation. The absolute average deviation between experimental and calculated data was 1.22 %. Moreover, the immiscibility between HFO134yf and squalane was found from 283.15 K to 323.15 K.
作者 孙艳军 邸高雷 夏娟 王晓坡 龚娜 SUN Yanjun;DI Gaolei;XIA Juan;WANG Xiaopo;GONG Na(Institute of Building Energy & Sustainability Technology,School of Human Settlements and Civil Engineering,Xi’an Jiaotong University,Xi’an 710049,Shaanxi,China;China National Heavy Machinery Research Institute Co.,Ltd.,Xi’an 710032,Shaanxi,China;Key Laboratory of Thermo-Fluid Science and Engineering,Ministry of Education,Xi’an Jiaotong University,Xi’an 710049,Shaanxi,China)
出处 《化工学报》 EI CAS CSCD 北大核心 2019年第A02期25-30,共6页 CIESC Journal
基金 国家自然科学基金项目(51606148)
关键词 溶解性 状态方程 测量 相平衡 solubility equation of state measurement phase equilibria
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  • 1何国庚,方泽云,邓承武.润滑油对R134a冰箱压缩机性能的影响[J].压缩机技术,2005(2):9-12. 被引量:8
  • 2林俊江.新冷媒压缩机用冷冻机油POE与PVE的分析和选用[J].制冷与空调,2005,5(4):92-95. 被引量:7
  • 3Comakli K, Simsek F, Comakli O. Determination of optimum working conditions R22 and R404A refrigerant mixtures in heat-pumps using Taguchi method [J]. Applied Energy, 2009, 86 (11): 2451-2458.
  • 4Mohanraj M, Muraleedharan C, Jayaraj S. A review on recent developments in new refrigerant mixtures for vapour compression- based refrigeration air-conditioning and heat pump units [J]. International Journal of Energy Research, 2011, 35 (8): 647-669.
  • 5Jung D, Park B, Lee H. Evaluation of supplementary/retrofit refrigerants for automobile air-conditioners charged with CFC12 [J]. International Journal of Refrigeration, 1999, 22 (7): 558-568.
  • 6Yang Z, Wu X. Retrofits and options for the alternatives to HCFC-22 [J]. Energy, 2013, 59: 1-21.
  • 7Wu J, Liu Z, Bi S. Viscosity of saturated liquid dime-thyl ether from (227 to 343) K [J]. Journal of Chemical & Engineering Data, 2003, 48 (2): 426-429.
  • 8Lee Y H, Kang D G, Choi H J. Performance evaluation of R435A on refrigeration system of water purifiers [J]. Journal of the Korean Solar Energy Society, 2013, 33 (1): 15-23.
  • 9Wang Rujin, Zhang Xiuping, Jia Lei, Wu Jufeng, Zhong Yu. Review of mixture solubilities of alternative refrigerants and lubricants//The Way of China Creation-2011 China Refrigeration Institute Academic Conference Proceedings [C]. 2011.
  • 10Huang Songbo (黄松伯). Research on L-DRC series refrigerator oil [D]. Qingdao: Qingdao University of Science & Technology, 2007.

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