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1. 西安交通大学热流科学与工程教育部重点实验室,西安,710049
2. 长安大学建筑工程学院,西安,710061
Online First:10 December 2022,
Published:2022
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LIU Zhuang, MA Yutian, KANG Kai, et al. Experimental Measurement and Analysis of High-Pressure Liquid Densities of Refrigerant R1233zd(E)[J]. 2022, 56(12): 195-198.
LIU Zhuang, MA Yutian, KANG Kai, et al. Experimental Measurement and Analysis of High-Pressure Liquid Densities of Refrigerant R1233zd(E)[J]. 2022, 56(12): 195-198. DOI: 10.7652/xjtuxb202212020.
为了进一步拓宽新型环保烯烃类制冷剂反式-1-氯-3
3
3-三氟丙烯(R1233zd(E))液相密度的测量范围
为建立其高精度的状态方程提供可靠的数据
采用振动管密度计测量了R1233zd(E)的高压液相密度
研究的温度范围为283.15~363.15 K
压力范围为1~60 MPa。经计算
密度测量的扩展不确定度小于0.6 kg·m
-3
(95%置信区间)。将测量得到的实验数据拟合成Tait型关联式
分析结果显示
方程密度计算值与实验数据的平均绝对偏差为0.02%
最大绝对偏差为0.05%。此外
计算得到了R1233zd(E)的等温压缩率、体膨胀系数、内压等导出热力学性质。结果表明
随着压力升高或温度降低
等温压缩率和体膨胀系数逐渐降低
而内压则逐渐增加。所得结论可为R1233zd(E)的进一步工程应用提供基础的物性数据。
To further expand the measurement range of the liquid density of trans-1-chloro-3
3
3-trifluoroprop-1-ene [R1233zd(E)
]
which is a new environmentally-friendly olefin refrigerant
and to provide the reliable data for the establishment of the high-accuracy equation of state
high-pressure liquid density of R1233zd(E)was measured with a vibrating-tube densimeter within a temperature range of 283.15 K to 363.15 K and a pressure range of 1 MPa to 60 MPa. The expanded uncertainty for the present density measurement was less than 0.6 kg·m
-3
at a confidence level of 95%. The measured density was fit
ted with a Tait-type equation. The average absolute deviation and maximum absolute deviation between the measured density and the calculated density were 0.02% and 0.05%
respectively. In addition
the derived thermodynamic properties such as isothermal compressibility
isobaric thermal expansivity and internal pressure were obtained. As the pressure increases or the temperature decreases
the isothermal compressibility and isobaric thermal expansivity decrease and the internal pressure increases. The obtained results can provide the fundamental thermophysical property data for the further engineering application of R1233zd(E).
刘志刚, 吴江涛, 陈圣坤. 冰箱空调替代制冷剂的研究进展(上)[J]. 西安交通大学学报, 2005, 39(7): 661-665.
LIU Zhigang, WU Jiangtao, CHEN Shengkun. Recent progress on alternatives to CFC12 and HCFC22: part 1 [J]. Journal of Xi'an Jiaotong University, 2005, 39(7): 661-665.
刘志刚, 吴江涛, 陈圣坤. 冰箱空调替代制冷剂的研究进展(下)[J]. 西安交通大学学报, 2005, 39(7): 666-669.
LIU Zhigang, WU Jiangtao, CHEN Shengkun. Recent progress on alternatives to CFC12 and HCFC22: part 2 [J]. Journal of Xi'an Jiaotong University, 2005, 39(7): 666-669.
BOBBO S, NICOLA G D, ZILIO C, et al. Low GWP halocarbon refrigerants: a review of thermophysical properties [J]. International Journal of Refrigeration, 2018, 90: 181-201.
许晨怡, 郭智恺, 史婉君, 等. HFOs制冷剂在制冷空调领域的替代研究综述 [J]. 制冷与空调, 2019, 19(8): 1-13.
XU Chenyi, GUO Zhikai, SHI Wanjun, et al. Substitution research summary of HFO refrigerants in refrigeration and air-conditioning field [J]. Refrigeration and Air-Conditioning, 2019, 19(8): 1-13.
杨文娟, 张华, 郝文洋. 新型环保工质R1233zd(E)的研究进展 [J]. 制冷技术, 2021, 41(6): 79-86.
YANG Wenjuan, ZHANG Hua, HAO Wenyang. Research progress of new environmentally friendly working fluid R1233zd(E)[J]. Chinese Journal of Refrigeration Technology, 2021, 41(6): 79-86.
WU Linli, CHEN Jun, WANG Shuangfeng. Experimental study on thermal performance of a pulsating heat pipe using R1233zd(E)as working fluid [J]. International Communications in Heat and Mass Transfer, 2022, 135: 106152.
姜佳彤, 胡斌, 王如竹, 等. R1233zd(E)高温热泵用卧式冷凝器的换热动态模拟 [J]. 化工学报, 2021, 72(Z1): 98-105.
JIANG Jiatong, HU Bin, WANG Ruzhu, et al. Dynamic simulation of horizontal condenser of R1233zd(E)high temperature heat pump [J]. CIESC Journal, 2021, 72(Z1): 98-105.
TANAKA K, AKASAKA R. Experimental determination of the critical parameters for trans-1-chloro-3,3,3-trifluoroprop-1-ene [R1233zd(E)] and cis-1-chloro-2,3,3,3-tetrafluoroprop-1-ene [R1224yd(Z)] [J]. International Journal of Refrigeration, 2021, 131: 61-67.
YIN Jianguo, KE Jinjun, ZHAO Guanjia, et al. Experimental vapor pressures and gaseous PvT properties of trans-1-chloro-3,3,3-trifluoropropene(R1233zd(E))[J]. International Journal of Refrigeration, 2021, 121: 253-257.
LIU Yu, ZHAO Xiaoming. Measurement of the heat capacity of R1233zd(E)[J]. International Journal of Refrigeration, 2018, 86: 127-132.
ZHAO Guanjia, YUAN Zemin, ZHANG Xing, et al. Saturated liquid kinematic viscosity, surface tension and thermal diffusivity of two low-GWP refrigerants 3,3,3-trifluoropropene(R1243zf)and trans-1-chloro-3,3,3-trifluoro-1-propene(R1233zd(E))by light scattering method [J]. International Journal of Refrigeration, 2021, 127: 194-202.
PENG Xiayao, LIU Hangtao, XU Liu, et al. Experimental speed of sound for trans-1-chloro-3,3,3-trifluoroprop-1-ene(R1233zd(E))and trans-1,1,1,4,4,4-hexafluorobut-2-ene(R1336 mzz(E))in gaseous phase [J]. The Journal of Chemical Thermodynamics, 2022, 171: 106808.
MONDÉJAR M E, MCLINDEN M O, LEMMON E W. Thermodynamic properties of trans-1-chloro-3,3,3-trifluoropropene(R1233zd(E)): vapor pressure,(p, ρ, T)behavior, and speed of sound measurements, and equation of state [J]. Journal of Chemical Engineering Data, 2015, 60(8): 2477-2489.
陈裕博, 杨昭, 武晓昆, 等. R1233zd(E)与冷冻机油的溶解特性研究 [J]. 制冷学报, 2022, 43(3): 57-61, 70.
CHEN Yubo, YANG Zhao, WU Xiaokun, et al. Research on the dissolution characteristics of R1233zd(E)using lubricating oils [J]. Journal of Refrigeration, 2022, 43(3): 57-61, 70.
ROMEO R, GIULIANO ALBO P A, LAGO S, et al. Experimental liquid densities of cis-1,3,3,3-tetrafluoroprop-1-ene(R1234ze(Z))and trans-1-chloro-3,3,3-trifluoropropene(R1233zd(E))[J]. International Journal of Refrigeration, 2017, 79: 176-182.
FEDELE L, PIERANTOZZI M, DI NICOLA G, et al. Compressed liquid density and vapor phase PvT measurements of trans-1-Chloro-3,3,3-trifluoroprop-1-ene [R1233zd(E)] [J]. Journal of Chemical Engineering Data, 2018, 63(1): 225-232.
AKASAKA R, LEMMON E W. An international standard formulation for trans-1-chloro-3,3,3-trifluoroprop-1-ene[R1233zd(E)]covering temperatures from the triple-point temperature to 450 K and pressures up to 100 MPa [J]. Journal of Physical and Chemical Reference Data, 2022, 51(2): 023101.
KANG Kai, WANG Xiaopo, YANG Fuxin, et al. Densities of diethylene glycol, monobutyl ether, diethylene glycol dibutyl ether, and ethylene glycol monobutyl ether from(283.15 to 363.15)K at pressures up to 60 MPa [J]. Journal of Chemical Engineering Data, 2016, 61(8): 2851-2858.
WANG Xiaopo, KANG Kai, LANG Hanxiao. High-pressure liquid densities and derived thermodynamic properties for methyl laurate and ethyl laurate [J]. The Journal of Chemical Thermodynamics, 2016, 103: 310-315.
LAGOURETTE B, BONED C, SAINT-GUIRONS H, et al. Densimeter calibration method versus temperature and pressure [J]. Measurement Science and Technology, 1992, 3(8): 699-703.
康凯. 流体高压PvTx实验测量及基于SAFT模型的热力学性质研究 [D]. 西安: 西安交通大学, 2019.
WAGNER W, PRUß A. The IAPWS formulation 1995 for the thermodynamic properties of ordinary water substance for general and scientific use [J]. Journal of Physical and Chemical Reference Data, 2002, 31(2): 387-535.
CHIRICO R D, FRENKEL M, MAGEE J W, et al. Improvement of quality in publication of experimental thermophysical property data: challenges, assessment tools, global implementation, and online support [J]. Journal of Chemical Engineering Data, 2013, 58(10): 2699-2716.
International Organization for Standardization. Uncertainty of measurement: part 3 guide to the expression of uncertainty in measurement: ISO/IEC Guide 98-3: 2008 [S]. Vernier, Geneva, Switzerland: International Organization for Standardization, 2008.
DI NICOLA G, STEVEN BROWN J, FEDELE L, et al. Subcooled liquid density measurements and PvT measurements in the vapor phase for 3,3,3-trifluoroprop-1-ene(R1243zf)[J]. International Journal of Refrigeration, 2013, 36(8): 2209-2215.
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