Heterogeneous nucleation condensation of methane gas on the wall-A molecular dynamics study

被引:10
作者
Wang, Yue [1 ]
Wang, Zhaoxi [1 ]
Wang, Bingbing [1 ]
Bian, Jiang [2 ]
Hua, Yihuai [3 ]
Cai, Weihua [1 ]
机构
[1] Northeast Elect Power Univ, Sch Energy & Power Engn, Lab Thermofluid Sci & Nucl Engn, Jilin 132012, Jilin, Peoples R China
[2] China Univ Petr East China, Coll Pipeline & Civil Engn, Qingdao 266580, Peoples R China
[3] China Natl Offshore Oil Corp, Gas & Power Grp Res & Dev Ctr, Beijing 100027, Peoples R China
基金
中国国家自然科学基金;
关键词
Natural gas; Heterogeneous nucleation; Condensation; Molecular dynamics simulations; HEAT-TRANSFER CHARACTERISTICS; FLOW;
D O I
10.1016/j.energy.2023.129087
中图分类号
O414.1 [热力学];
学科分类号
摘要
Methane is condensed in a low-temperature heat exchanger, a critical step in the liquefaction of natural gas. Currently, the microscopic mechanism regarding the heterogeneous condensation of methane on the heat exchanger wall remains unclear. This lack of understanding is of scientific importance in advancing the development of natural gas liquefaction processes. Therefore, molecular dynamics simulation is used in this paper to study the process of methane heterogeneous nucleation and core growth during the early stage of condensation, and analyze the influence mechanism of wall energy and cold source temperature on nucleation kinetics. The results show that the high-energy wall can enhance the interaction between cold wall atoms and methane molecules, facilitate heat transfer, accrete methane molecules to condense and adsorb on the wall to form a core, thus increasing the condensation rate of methane. Whereas, the low-temperature cold source promotes the condensation nucleation and growth process by increasing the supersaturation of methane. This study investigates the process and kinetic characteristics of heterogeneous nucleation of methane from a microscale perspective, providing guidance for the development of natural gas liquefaction in low-temperature heat exchangers, with the aim of enhancing the diversity and reliability of energy supply.
引用
收藏
页数:13
相关论文
共 35 条
[1]   Modeling of heat transfer in dropwise condensation [J].
AbuOrabi, M .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 1998, 41 (01) :81-87
[2]  
Allen M., 1987, DJ TILDESLEY COMPUTE
[3]  
Becker R, 1935, ANN PHYS-BERLIN, V24, P719
[4]   Homogeneous nucleation and condensation mechanism of methane gas: A molecular simulation perspective [J].
Bian, Jiang ;
Guo, Dan ;
Li, Yuxuan ;
Cai, Weihua ;
Hua, Yihuai ;
Cao, Xuewen .
ENERGY, 2022, 249
[5]   Wetting characteristics of ethane droplet-A molecular dynamics study [J].
Cai, Weihua ;
He, Ziyu ;
Wang, Jiaxin ;
Wang, Zhaoxi ;
Li, Qian ;
Wang, Yue .
JOURNAL OF MOLECULAR LIQUIDS, 2023, 371
[6]  
[蔡伟华 Cai Weihua], 2022, [工程热物理学报, Journal of Engineering Thermophysics], V43, P1375
[7]   Influence of nanoparticle properties on the thermal conductivity of nanofluids by molecular dynamics simulation [J].
Cui, Wenzheng ;
Shen, Zhaojie ;
Yang, Jianguo ;
Wu, Shaohua ;
Bai, Minli .
RSC ADVANCES, 2014, 4 (98) :55580-55589
[8]   Molecular dynamics study of anisotropic behaviours of water droplet on textured surfaces with various energies [J].
Ding, Wenyang ;
Han, Dan ;
Zhang, Jingzhi ;
Ma, Qingming ;
Li, Xiaoyan ;
Zhang, Jingchao ;
Wang, Xinyu .
MOLECULAR PHYSICS, 2021, 119 (03)
[9]   Heterogeneous condensation mechanism of methane-hexane binary mixture [J].
Guo, Dan ;
Cao, Xuewen ;
Zhang, Pan ;
Ding, Gaoya ;
Liu, Yang ;
Cao, Hengguang ;
Bian, Jiang .
ENERGY, 2022, 256
[10]   Exploring Inherent Sensor Redundancy for Automotive Anomaly Detection [J].
He, Tianjia ;
Zhang, Lin ;
Kong, Fanxin ;
Salekin, Asif .
PROCEEDINGS OF THE 2020 57TH ACM/EDAC/IEEE DESIGN AUTOMATION CONFERENCE (DAC), 2020,