Study of pool boiling heat transfer of nanofluid in the PCD electrical fields

被引:5
|
作者
Chen, Yanjun [1 ]
Fu, Shijin [1 ]
Guo, Jun [1 ]
Liu, Xiuliang [2 ]
He, Deqiang [1 ]
机构
[1] Guangxi Univ, Sch Mech Engn, Guangxi Key Lab Mfg Syst & Adv Mfg Technol, Nanning 530004, Peoples R China
[2] Huazhong Univ Sci & Technol, Sch Energy & Power Engn, Wuhan 430074, Peoples R China
关键词
Nanofluid; Electrical fields; Periodically changing direction; Pool boiling; Heat transfer; Predicted model; ENHANCEMENT; PERFORMANCE; SIMULATION; SURFACE;
D O I
10.1016/j.icheatmasstransfer.2022.106213
中图分类号
O414.1 [热力学];
学科分类号
摘要
Nanofluids with excellent thermal properties can be used for a coolant and the heat exchange. Actually, the heat transfer between the nanoparticles and working medium benefits from the nanoparticles movement, which could be controlled actively by the electrical field with periodically changed direction (PCD electrical field). Therefore, the coupled effect of nanofluid and switching period and the prediction model were investigated. Concretely, the boiling heat transfer coefficient (BHTC) and the critical heat flux (CHF) with various switching periods of the electrical field were compared. Meanwhile, the mechanism of heat transfer enhancement was discussed. Besides, the predicted model was developed. The present study finds that the BHTC and the CHF will be further strengthened due to the coupled effect of the PCD electrical field and nanofluid. However, this enhancement has an optimal concentration. Moreover, the heat transfer performance enhancement is attributed to the continuous heat transfer by nanoparticle and the further decrease of surface tension. The prediction curves mostly coincide with experimental data, and the prediction models are proposed by considering the influence of the switching period, the nanoparticles movement, the gas-liquid interface surface tension and the dynamic thermal conductivity.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Study of pool boiling heat transfer of nanofluid in the PCD electrical fields
    Chen, Yanjun
    Fu, Shijin
    Guo, Jun
    Liu, Xiuliang
    He, Deqiang
    International Communications in Heat and Mass Transfer, 2022, 137
  • [2] Nanofluid pool boiling heat transfer phenomenon
    Vafaei, Saeid
    POWDER TECHNOLOGY, 2015, 277 : 181 - 192
  • [3] Visualization of pool boiling heat transfer of magnetic nanofluid
    Abad, Mostafa Zarei Saleh
    Ebrahimi-Dehshali, Massoud
    Bijarchi, Mohamad Ali
    Shafii, Mohammad Behshad
    Moosavi, Ali
    HEAT TRANSFER-ASIAN RESEARCH, 2019, 48 (07): : 2700 - 2713
  • [4] A REVIEW OF POOL BOILING HEAT TRANSFER PROPERTIES BY NANOFLUID Received
    Najmi, M. S. A.
    Hassan, A.
    JURNAL TEKNOLOGI-SCIENCES & ENGINEERING, 2023, 85 (03): : 1 - 13
  • [5] FORCE FIELDS EFFECTS ON POOL BOILING HEAT TRANSFER
    Grassi, Walter
    Testi, Daniele
    JOURNAL OF ENHANCED HEAT TRANSFER, 2014, 21 (2-3) : 141 - 182
  • [6] A Correlation for the Prediction of Heat Flux for Nucleate Pool Boiling Heat Transfer of Nanofluid
    Sudev Das
    Swapan Bhaumik
    Arabian Journal for Science and Engineering, 2014, 39 : 4997 - 5006
  • [7] Experimental study on pool boiling heat transfer enhancement in reduced graphene oxide nanofluid
    Huang X.
    Chen Z.
    Gui N.
    Yang X.
    Tu J.
    Jiang S.
    Qinghua Daxue Xuebao/Journal of Tsinghua University, 2023, 63 (08): : 1291 - 1296
  • [8] A Correlation for the Prediction of Heat Flux for Nucleate Pool Boiling Heat Transfer of Nanofluid
    Das, Sudev
    Bhaumik, Swapan
    ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2014, 39 (06) : 4997 - 5006
  • [9] Particulate fouling during the pool boiling heat transfer of MWCNT nanofluid
    Xue, H. Sheng
    Fan, Jian R.
    Hu, Ya C.
    Hong, Rong H.
    HEAT AND MASS TRANSFER, 2012, 48 (05) : 875 - 879
  • [10] Particulate fouling during the pool boiling heat transfer of MWCNT nanofluid
    H. Sheng Xue
    Jian R. Fan
    Ya C. Hu
    Rong H. Hong
    Heat and Mass Transfer, 2012, 48 : 875 - 879