Expanded graphite nanoparticles-based eutectic phase change materials for enhancement of thermal efficiency of pin-fin heat sink arrangement

被引:4
|
作者
Panda, Debabrata [1 ]
Saraf, Shubhma Dilip [1 ]
Gangawane, Krunal M. [1 ,2 ]
机构
[1] Natl Inst Technol Rourkela, Dept Chem Engn, Rourkela 769008, Odisha, India
[2] Indian Inst Technol Jodhpur, Dept Chem Engn, Jodhpur 342030, Rajasthan, India
关键词
Expanded graphite; Eutectic PCM; Heat storage system; Finned heat sink; Thermal conductivity; ENERGY-STORAGE; PERFORMANCE; COMPOSITE; PCM; BEHAVIOR;
D O I
10.1016/j.tsep.2024.102417
中图分类号
O414.1 [热力学];
学科分类号
摘要
This experimental work foresights the synthesis and characterization of the expanded graphite (EG) enhanced organic-organic eutectic PCM (EGePCM) with different weight percentages of the EG (phi = 1-5 %). In particular, the expanded graphite nanoparticles were exfoliated from the graphite flakes by acid protonation followed by extraction from the traditional co-precipitation synthesis. A series of EGePCM nanocomposites were fabricated through the homogeneous suspension of EG nanoparticles in the eutectic mixture (1:1) of organic PCM. The surface texture, physical morphology and chemical interaction of individual elements present inside the nanocomposites were thoroughly examined by FTIR, XRD, SEM, and FESEM. Conversely, the physical attributes, thermal stability, thermal degradation, and charging-discharging performance were also investigated. The EGePCM nanocomposite with 3 wt% of EG nanoparticles expresses a favourable increase of thermal conductivity by 232.24 %, with a nominal reduction in the latent heat storage capacity (176.5 J/g) of the PCM. In conjunction with the thermal attribute intensification, the incorporation of EG in nanocomposite reduces the supercooling degree to 9.16 degrees C with a phase change enthalpy of 174.8 J/g in cooling and 176.5 J/g in heating stage for 3 wt% of EG. A comprehensive experimental methodology was employed to investigate the thermal enactment features of different EGePCM nanocomposites inside a regular pin-fin arrangement imperilled with steady-state heat transfer. The effectiveness of the cooling rate was also encompassed under a variable range of heat flux (1.6-3.2 KW/m(2)) and EGePCM mixture (phi = 1-5 %). The heat transfer effectiveness was optimal at a mass fraction of 5 wt%, resulting in a 30 degrees C base temperature drop of the heat sink and a decrease in the charging-discharging duration of the nano PCM composite. This observation suggests an improvement in the thermal conductivity of the system with an incorporation of high thermal conductive EG nanoparticles. The enhanced thermal performance and notable thermal, physical and chemical stability facilitate the phase transition progression and render it highly advantageous for electronic or micro-electronic thermal cooling applications.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Preparation and thermal properties of phase change materials based on paraffin with expanded graphite and carbon foams prepared from sucroses
    Yin, Zhaoyu
    Huang, Zhaohui
    Wen, Ruilong
    Zhang, Xiaoguang
    Tan, Bo
    Liu, Yan'gai
    Wu, Xiaowen
    Fang, Minghao
    RSC ADVANCES, 2016, 6 (97): : 95085 - 95091
  • [32] Thermal characterization of phase change materials based on linear low-density polyethylene, paraffin wax and expanded graphite
    Sobolciak, Patrik
    Karkri, Mustapha
    Al-Maaded, Mariam A.
    Krupa, Igor
    RENEWABLE ENERGY, 2016, 88 : 372 - 382
  • [33] Shape-stabilized phase change materials based on fatty acid eutectics/expanded graphite composites for thermal storage
    Tang, Xuehui
    Zhu, Bei
    Xu, Minghan
    Zhang, Wei
    Yang, Zhi
    Zhang, Yafei
    Yin, Guilin
    He, Dannong
    Wei, Hao
    Zhai, Xiaoqiang
    ENERGY AND BUILDINGS, 2015, 109 : 353 - 360
  • [34] High-Performance Phase-Change Materials Based on Paraffin and Expanded Graphite for Solar Thermal Energy Storage
    Fang, Guihua
    Yu, Menghuan
    Meng, Keke
    Shang, Fei
    Tan, Xin
    ENERGY & FUELS, 2020, 34 (08) : 10109 - 10119
  • [35] Thermal management of IC's and microprocessor using heat sinks (pin fin and channel) incorporating phase change materials (PCM) for transient operation
    Marongiu, MJ
    Berhe, MK
    Fallon, GS
    1999 INTERNATIONAL SYMPOSIUM ON MICROELECTRONICS, PROCEEDINGS, 1999, 3906 : 789 - 794
  • [36] Enhancement of Thermo-Physical Properties of Expanded Vermiculite-Based Organic Composite Phase Change Materials for Improving the Thermal Energy Storage Efficiency
    Song, Shuang
    Li, Jinhong
    Yang, Zhiwei
    Wang, Chengdong
    ACS OMEGA, 2021, 6 (05): : 3891 - 3899
  • [37] Preparation and thermal conductivity enhancement of binary non-eutectic phase change materials based on alum-urea for solar heat storage system
    Shen, Yuandong
    Niu, Junyi
    Luan, Yuzhu
    Liu, Wei
    Qiu, Haobin
    Gao, Xuenong
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2024, 271
  • [38] Preparation and Properties of Capric-Myristic Acid/Expanded Graphite Composite Phase Change Materials for Latent Heat Thermal Energy Storage
    Zhou, Dongyi
    Yuan, Jiawei
    Zhou, Yuhong
    Liu, Yicai
    ENERGIES, 2020, 13 (10)
  • [39] Preparation and thermal properties of low-temperature composite phase-change materials based on a binary eutectic mixture with expanded graphite: Effect of particle size and mass fraction
    Zhao, Le
    Yu, Qiongfen
    Li, Ming
    Zhang, Ying
    Wang, Yunfeng
    Zhan, Deneng
    Jin, Shaoxuan
    Huang, Yaowei
    JOURNAL OF ENERGY STORAGE, 2021, 40 (40):
  • [40] Phase-change smart lines based on paraffin-expanded graphite/polypropylene hollow fiber membrane composite phase change materials for heat storage
    Luo, Dajun
    Xiang, Li
    Sun, Xin
    Xie, Lan
    Zhou, Dengfeng
    Qin, Shuhao
    ENERGY, 2020, 197