Molecular dynamics simulation of effect of temperature on Cu nanoparticles agglomeration of nanofluids

被引:12
|
作者
Wang, Jingtao [1 ]
Li, Zhiwei [1 ]
Jia, Yuting [1 ]
Wang, Bingbing [1 ]
Xu, Zhiming [1 ]
机构
[1] Northeast Elect Power Univ, Sch Energy & Power Engn, Jilin, Jilin, Peoples R China
基金
中国国家自然科学基金;
关键词
Temperature; Nanoparticles; Molecular dynamics simulation; Agglomeration; Colloids; THERMAL-CONDUCTIVITY; STABILITY; AGGREGATION; VISCOSITY; WATER; LAYER;
D O I
10.1007/s11051-020-05131-y
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The agglomeration of nanoparticles is a key factor which affects the stability of nanofluids. In order to analyze the effect of temperature on the agglomeration of nanoparticles from a micro perspective, molecular dynamics method is adopted to investigate the agglomeration characteristics of Cu nanoparticles in liquid water. Two conditions of stationary state and flow state are considered in the simulation. The results show that the collision and agglomeration accelerate with the increase of fluid temperature for either stationary state or flow state. The aggregation of particles can be divided into the Brown movement stage, the adhesion stage, and the coalescence stage. The centroid distances of nanoparticles no longer change when the aggregation process completes. The potential energy of the system increases with the fluid temperature. The total potential energy of the system decreases with each collision of Cu particles. The total potential energy of the system no longer changes until all the Cu particles collide and agglomerate. The obtained results can provide useful understanding of the stability of nanofluids affected by the temperature. And the stability further affects the thermal behavior of nanofluids.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Molecular dynamics simulation of pressure isotherms for nanofluids
    V. Ya. Rudyak
    Colloid Journal, 2016, 78 : 204 - 209
  • [22] Molecular dynamics simulation of the thermal conductivity of nanofluids
    Li, Ling
    Guo, Li
    Yang, Mo
    Lu, Mei
    Yu, Min
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2010, 31 (11): : 1933 - 1936
  • [23] Study on the influence of the agglomeration effect of composite nanoparticles on the photothermal properties of nanofluids
    Gong, Han
    Ma, Xiaoteng
    Meng, Shengnan
    Wang, Bingcheng
    Cui, Zheng
    SOLAR ENERGY, 2024, 270
  • [24] Molecular Dynamics Simulation of Temperature Impact on the Viscosity of Transformer Oil-based Nanofluids
    Li Yang
    Dai Jianzhuo
    Dong Ming
    Wang Li
    2016 INTERNATIONAL CONFERENCE ON CONDITION MONITORING AND DIAGNOSIS (CMD), 2016, : 376 - 379
  • [25] Molecular Dynamics Simulation of the Coalescence and Melting Process of Cu and Ag Nanoparticles
    Guo, Hui
    Zhang, LinFu
    Zhu, Qiang
    Wang, ChuanJie
    Chen, Gang
    Zhang, Peng
    ADVANCES IN CONDENSED MATTER PHYSICS, 2021, 2021
  • [26] Study the Effect of Temperature on the Diffusion Bonding of Cu-Al by Using Molecular Dynamics Simulation
    Zaenudin, M.
    Abd Gaffar, Abd Hafeez
    Mohammed, M. N.
    Ali, Musab A. M.
    Al-Sanjary, Omar Ismael
    Al-Zubaidi, S.
    2019 IEEE INTERNATIONAL CONFERENCE ON AUTOMATIC CONTROL AND INTELLIGENT SYSTEMS (I2CACIS), 2019, : 345 - 348
  • [27] Molecular Dynamics Simulation on Micro Couette Flow of Nanofluids
    Cui, Wenzheng
    Bai, Minli
    Lv, Jizu
    Li, Xiaojie
    MATERIALS AND DESIGN, PTS 1-3, 2011, 284-286 : 658 - +
  • [28] Potential of molecular dynamics in the simulation of nanofluids properties and stability
    Abdelrazik, A. S.
    Sayed, Mostafa A. M.
    Omar, Asmaa M. A.
    Ayman, F. M. Fatma
    Oulguidoum, Abdeladim
    Kotob, Esraa
    Helmy, Mohamed H. M.
    Alshimaa, H. E.
    JOURNAL OF MOLECULAR LIQUIDS, 2023, 381
  • [29] Molecular dynamics simulation on the friction properties of confined nanofluids
    Xu, Cang
    Schall, David
    Barber, Gary
    MATERIALS TODAY COMMUNICATIONS, 2023, 34
  • [30] Effect of substrate surface roughness and parameters on the behavior of Cu nanoparticles sintering: A study by molecular dynamics simulation
    Liu, Guangyin
    Li, Hanbing
    Cao, Jun
    Shen, Jun
    APPLIED SURFACE SCIENCE, 2025, 692