Rowane Aaron J, Perkins Richard A
Applied Chemicals and Materials Division, National Institute of Standards and Technology, Boulder, CO 80305, USA.
Int J Thermophys. 2022;43(4). doi: 10.1007/s10765-021-02966-y.
Sound speed data measured using a dual-path pulse-echo instrument are reported for binary mixtures of difluoromethane (R-32) with 2,3,3,3-tetrafluoropropene (R-1234yf) or -1,3,3,3-tetrafluoropropene (R-1234ze(E)). The sound speed is reported at two compositions for each binary mixture of approximately (0.33/67) and (0.67/0.33) mole fraction at temperatures between 230 K and 345 K. Data are reported from pressures slightly above the bubble point to 12 MPa for R-32/1234yf mixtures to avoid potential polymerization reactions and to 53 MPa for the R-32/1234ze(E) mixtures. The mean uncertainty of the sound speed data are less than 0.1% of the measured value where uncertainties at individual state points range from 0.04% to 0.5% of the measured value as the conditions approach the mixture critical region. The reported data are compared to available Helmholtz-energy-explicit EOS included in REFPROP and all systems studied have average absolute deviations greater than 2%. The comparisons show that further adjustments to the mixture models are needed to provide a reasonable representation of the data within its experimental uncertainty.
报告了使用双路径脉冲回波仪器测量的二氟甲烷(R - 32)与2,3,3,3 - 四氟丙烯(R - 1234yf)或1,3,3,3 - 四氟丙烯(R - 1234ze(E))二元混合物的声速数据。对于每种二元混合物,在温度230 K至345 K之间,以大约(0.33/67)和(0.67/0.33)摩尔分数的两种组成报告了声速。对于R - 32/1234yf混合物,数据报告的压力范围是略高于泡点至12 MPa,以避免潜在的聚合反应;对于R - 32/1234ze(E)混合物,压力范围至53 MPa。声速数据的平均不确定度小于测量值的0.1%,在接近混合物临界区域的条件下,各个状态点的不确定度范围为测量值的0.04%至0.5%。将报告的数据与REFPROP中包含的可用亥姆霍兹能量显式状态方程进行了比较,所有研究的系统平均绝对偏差均大于2%。比较结果表明,需要对混合物模型进行进一步调整,以便在实验不确定度范围内对数据进行合理表示。