Numerical study of the flow and heat transfer characteristics of microencapsulated phase change slurry

被引:1
作者
Wang, Enpei [1 ]
Li, Lei [1 ,2 ]
机构
[1] Harbin Engn Univ, Fundamental Sci Nucl Safety & Simulat Technol Lab, Harbin, Peoples R China
[2] Harbin Engn Univ, Fundamental Sci Nucl Safety & Simulat Technol Lab, Harbin 150001, Peoples R China
关键词
Microencapsulated phase change material; Eulerian-Eulerian model; flow characteristics; equivalent specific heat model; CFD; THERMAL-ENERGY STORAGE; TRANSFER ENHANCEMENT; LAMINAR-FLOW; CIRCULAR TUBE; ICE STORAGE; PERFORMANCE; PCM;
D O I
10.1080/15567036.2023.2263401
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Microencapsulated phase change material (MPC) slurry is created by combining phase change material with a carrier fluid that has superior heat transfer properties compared to ordinary water. MPC slurry is conventionally investigated as heat storage and working fluid in a variety of applications to reduce power consumption. This study numerically investigates the impact of several critical parameters on the heat transfer coefficient (HTC) of MPC slurry in a circular pipe, using Eulerian-Eulerian model. The right triangle curve, one of equivalent specific heat model (ESHM), was applied to evaluate the influence of different critical variable values specified as T-in = 305 K, q(wall) = -125 similar to-200 kW/m(2), alpha(v) = 0 similar to 15%, Re = 6290 similar to 13838, and D = 10 similar to 25 mm. The results show that increasing the velocity develops local HTC and reduce the rate of heat transformation. Phase change processing takes roughly twice as long at 1.1 m/s as at 0.5 m/s. Additionally, the results demonstrate that a high concentration of MPC slurry is advantageous for energy storage, as the temperature of MPC slurry is maintained over a considerable distance in cooling conditions. At a velocity of 0.8 m/s, the outlet bulk temperature of MPC slurry at various concentrations is 2-6 K higher than that of water. Furthermore, the evaluation reveals that the HTC was largely determined by pipe size, which was the primary factor. The findings of this study are useful for optimizing energy systems that require thermal energy management.
引用
收藏
页码:11925 / 11942
页数:18
相关论文
共 48 条
  • [21] Experimental investigations and CFD modeling for flow of highly concentrated iron ore slurry through horizontal pipeline
    Kumar, Navneet
    Gopaliya, Manoj Kumar
    Kaushal, D. R.
    [J]. PARTICULATE SCIENCE AND TECHNOLOGY, 2019, 37 (02) : 232 - 250
  • [22] Numerical evaluation on the flow and heat transfer characteristics of microencapsulated phase change slurry flowing in a circular tube
    Liu, Lingkun
    Zhu, Chuqiao
    Fang, Guiyin
    [J]. APPLIED THERMAL ENGINEERING, 2018, 144 : 845 - 853
  • [23] A structured phase change material integrated by MXene/AgNWs modified dual-network and polyethylene glycol for energy storage and thermal management
    Ma, Yan
    Zou, Minming
    Chen, Wenjing
    Luo, Wenxing
    Hu, Xiaowu
    Xiao, Shikun
    Luo, Lixiang
    Jiang, Xiongxin
    Li, Qinglin
    [J]. APPLIED ENERGY, 2023, 349
  • [24] Properties and performance of hybrid suspensions of MPCM/nanoparticles for LED thermal management
    Mo, Songping
    Ye, Jiarong
    Jia, Lisi
    Chen, Ying
    [J]. ENERGY, 2022, 239
  • [25] Supercooling elimination of cryogenic-temperature microencapsulated phase change materials (MPCMs) and the rheological behaviors of their suspension
    Mustapha, Abdullah
    Wang, Yi
    Ding, Yulong
    Li, Yongliang
    [J]. JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2022, 21 : 2277 - 2295
  • [26] Innovative bifunctional heat storage nanocapsules containing polymerizable surfactant for antimicrobial thermoregulating clothes
    Prateepmaneerak, Naluphon
    Chaiyasat, Amorn
    Kaewpa, Dolnapa
    Chaiyasat, Preeyaporn
    [J]. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2022, 653
  • [27] Experimental and numerical investigation of laminar heat transfer of microencapsulated phase change material slurry (MPCMS) in a circular tube with constant heat flux
    Qiu, Zhongzhu
    Li, Lin
    [J]. SUSTAINABLE CITIES AND SOCIETY, 2020, 52
  • [28] Thermal performances evaluation of a flat-plate solar collector using microencapsulated phase-change slurry as heat transfer medium
    Ran, Fengming
    Zhang, Huan
    Xu, Changlu
    Fang, Guiyin
    [J]. INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2022, 46 (10) : 14044 - 14059
  • [29] Potential of macroencapsulated PCM for thermal energy storage in buildings: A comprehensive review
    Rathore, Pushpendra Kumar Singh
    Shukla, Shailendra Kumar
    [J]. CONSTRUCTION AND BUILDING MATERIALS, 2019, 225 : 723 - 744
  • [30] Silva R., 2015, Journal of Computational Multiphase Flows, V7, P241