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 Jun;43(8). doi: 10.1007/s10765-022-03052-7.
Speed of sound data measured using a dual-path pulse-echo instrument are reported for three binary refrigerant mixtures, R-125/1234yf, R-1234yf/152a, and R-1234ze(E)/227ea, at compositions of (0.33/0.67) and (0.67/0.33) mole fraction. The speed of sound was studied at temperatures ranging from 230 K to 345 K from pressures slightly above the bubble point curve up to 20 MPa for the mixtures containing R-1234yf and 49 MPa for the R-1234ze(E)/227ea mixtures. The relative combined expanded speed of sound uncertainty ranged from 0.039 % to 0.317 % with a mean uncertainty over all state points of less than 0.10 %. The reported data are compared to the most recent mixture models in REFPROP for each blend studied. Comparisons of available mixture models for the R-125/1234yf and R-1234yf/152a blends exhibit average absolute deviation values ranging from 0.10 % to 0.27 %, and the average absolute deviations for R-1234ze(E)/227ea blends range from 0.62 % to 0.94 %. The comparisons show that only minor adjustments are required to the R-125/1234yf and R-1234yf/152a mixture models to represent the speed of sound data within its uncertainty. However, significant adjustments are needed to improve the current mixture models for the R-1234ze(E)/227ea blend. Deficiencies with the R-1234ze(E)/227ea mixture model are not unexpected since it (1) utilizes a pure-fluid EOS R-1234ze(E) that has been shown to inaccurately represent R-1234ze(E) speed of sound values and (2) uses binary interaction parameters for the chemically similar mixture of R-1234yf/227ea.
报告了使用双路径脉冲回波仪器测量的三种二元制冷剂混合物(R-125/1234yf、R-1234yf/152a和R-1234ze(E)/227ea)在摩尔分数为(0.33/0.67)和(0.67/0.33)时的声速数据。研究了含R-1234yf混合物在230 K至345 K温度范围内、压力从略高于泡点曲线至20 MPa时的声速,以及R-1234ze(E)/227ea混合物在49 MPa时的声速。声速的相对合成扩展不确定度范围为0.039%至0.317%,所有状态点的平均不确定度小于0.10%。将报告的数据与REFPROP中针对每种研究混合物的最新混合物模型进行了比较。R-125/1234yf和R-1234yf/152a混合物的现有混合物模型比较显示,平均绝对偏差值范围为0.10%至0.27%,R-1234ze(E)/227ea混合物的平均绝对偏差范围为0.62%至0.94%。比较表明,只需对R-125/1234yf和R-1234yf/152a混合物模型进行微小调整,即可在不确定度范围内表示声速数据。然而,需要进行重大调整以改进当前的R-1234ze(E)/227ea混合物模型。R-1234ze(E)/227ea混合物模型存在缺陷并不意外,因为它(1)使用的纯流体状态方程R-1234ze(E)已被证明不能准确表示R-1234ze(E)的声速值,(2)对化学性质相似的R-1234yf/227ea混合物使用了二元相互作用参数。