Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7175272 | International Journal of Refrigeration | 2018 | 37 Pages |
Abstract
In this work, a Helmholtz free energy equation of state for R290â¯+â¯R134a based on the multi-fluid approximations model was developed to describe the thermophysical properties of the binary mixture. The present equation shows more competitive than the default equation in REFPROP 9.1 (Lemmon et al., 2013). It covers a temperature range of (252-400) K and pressures up to 6.1â¯MPa. The estimated standard uncertainties of the present equation are 0.70% and 0.90% for the bubble point and dew point pressures, 0.26â¯K and 0.29â¯K for the bubble point and dew point temperatures, 0.13% and 0.60% for the saturated liquid and vapor densities, respectively. The main purpose is to provide a useful model for R290â¯+â¯R134a, and thus to promote its better applications for the design and optimization of the refrigeration systems.
Keywords
Related Topics
Physical Sciences and Engineering
Engineering
Mechanical Engineering
Authors
Zhang Haiyang, Gao Bo, Wu Wei, Li Huiya, Zhong Quan, Chen YanYan, Liu Wenjing, Song Yaonan, Zhao Yanxing, Dong Xueqiang, Gong Maoqiong, Luo Ercang, Hu Jianying,