化工学报 ›› 2019, Vol. 70 ›› Issue (6): 2036-2050.DOI: 10.11949/0438-1157.20181508
赵延兴1(),王宪1,2,姚晓宇1,2,董学强1,沈俊1,2,公茂琼1,2()
收稿日期:
2018-12-24
修回日期:
2019-03-15
出版日期:
2019-06-05
发布日期:
2019-06-05
通讯作者:
公茂琼
作者简介:
<named-content content-type="corresp-name">赵延兴</named-content>(1988—),男,博士,助理研究员,<email>zyx@mail.ipc.ac.cn</email>
基金资助:
Yanxing ZHAO1(),Xian WANG1,2,Xiaoyu YAO1,2,Xueqiang DONG1,Jun SHEN1,2,Maoqiong GONG1,2()
Received:
2018-12-24
Revised:
2019-03-15
Online:
2019-06-05
Published:
2019-06-05
Contact:
Maoqiong GONG
摘要:
混合工质汽液相平衡学术内涵丰富且应用广泛,而混合规则是决定混合物性描述准确与否的关键因素。综述了具有代表性的混合规则,包括原始的二次型、非二次型、密度型、状态方程-超额自由能型等混合规则,评价了其在流体汽液相平衡的描述能力,辅以数学推导介绍了其发展的动机及存在的优劣,以期对将来混合规则发展提供思路。
中图分类号:
赵延兴, 王宪, 姚晓宇, 董学强, 沈俊, 公茂琼. 流体汽液相平衡混合规则研究进展[J]. 化工学报, 2019, 70(6): 2036-2050.
Yanxing ZHAO, Xian WANG, Xiaoyu YAO, Xueqiang DONG, Jun SHEN, Maoqiong GONG. Review on mixing rules in vapor-liquid equilibrium of mixtures[J]. CIESC Journal, 2019, 70(6): 2036-2050.
混合规则 | 类型 | 混合规则数学形式 |
---|---|---|
Stryjek-Vera[ | Margules型 | |
Van laar型 | | |
Panagiotopoulos-Reid[ | | |
Adachi-Sugie[ | | |
Sandoval等[ | GMR2 | |
GMR3 | | |
Schwartzentruber-Renon[ | | |
Schwartzentruber-Renon[ | | |
Twu等[ | | |
Mathias等[ | | |
Luedecke-Prausnitz[ | | |
Panagiotopoulos [ | | |
Wilczek-Vera[ | Margules型 | |
Van laar型 | |
表1 对vdW混合规则的典型修改形式
Table 1 Some modified forms based on vdW mixing rule
混合规则 | 类型 | 混合规则数学形式 |
---|---|---|
Stryjek-Vera[ | Margules型 | |
Van laar型 | | |
Panagiotopoulos-Reid[ | | |
Adachi-Sugie[ | | |
Sandoval等[ | GMR2 | |
GMR3 | | |
Schwartzentruber-Renon[ | | |
Schwartzentruber-Renon[ | | |
Twu等[ | | |
Mathias等[ | | |
Luedecke-Prausnitz[ | | |
Panagiotopoulos [ | | |
Wilczek-Vera[ | Margules型 | |
Van laar型 | |
分类 | 混合规则 | | |
---|---|---|---|
无限压力 | TC[ | | |
零压参考 | TCB[ | | |
常数r替代ε | TCB(r)[ | | |
表2 TC系列混合规则
Table 2 TC type mixing rules
分类 | 混合规则 | | |
---|---|---|---|
无限压力 | TC[ | | |
零压参考 | TCB[ | | |
常数r替代ε | TCB(r)[ | | |
模型 | 状态方程 | ε=v/b | 参考压力 |
---|---|---|---|
HV[ | SRK/PR | 1 | 无限压力 |
WS[ | SRK/PR | 1 | 无限压力 |
CHV[ | SRK/PR | 1 | 无限压力 |
HVOS[ | SRK/PR | 1 | 无限压力 |
Fischer-Gmehling[ | SRK | 1.1 | 无限压力 |
MHV1[ | SRK/PR | 1.235/1.228 | 零压 |
MHV2[ | SRK | 1.632 | 零压 |
Michelsen[ | SRK/PR | 1.4~1.8 | 零压 |
Novenario [ | PR | 1.15 | 零压 |
TCB(r) [ | SRK/PR | 1.18 | 零压 |
VTPR[ | PR | 1.225 | 101325 Pa |
PSRK[ | SRK | 1.099 | 101325 Pa |
Noll-Fischer[ | SRK | 1.189 | 0.23 MPa |
LCVM[ | PR | 1.164 | 无参考压力 |
表3 不同模型的的无量纲体积值
Table 3 Dimensionless volume of some ACM-EoS models
模型 | 状态方程 | ε=v/b | 参考压力 |
---|---|---|---|
HV[ | SRK/PR | 1 | 无限压力 |
WS[ | SRK/PR | 1 | 无限压力 |
CHV[ | SRK/PR | 1 | 无限压力 |
HVOS[ | SRK/PR | 1 | 无限压力 |
Fischer-Gmehling[ | SRK | 1.1 | 无限压力 |
MHV1[ | SRK/PR | 1.235/1.228 | 零压 |
MHV2[ | SRK | 1.632 | 零压 |
Michelsen[ | SRK/PR | 1.4~1.8 | 零压 |
Novenario [ | PR | 1.15 | 零压 |
TCB(r) [ | SRK/PR | 1.18 | 零压 |
VTPR[ | PR | 1.225 | 101325 Pa |
PSRK[ | SRK | 1.099 | 101325 Pa |
Noll-Fischer[ | SRK | 1.189 | 0.23 MPa |
LCVM[ | PR | 1.164 | 无参考压力 |
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