Journal of Dalian Maritime University >
2016 , Vol. 42 >Issue 3: 89 - 94
DOI: https://doi.org/10.16411/j.cnki.issn1006-7736.2016.03.015
Effect of MWCNT nanostructured surface on subcooled flow boiling
Received date: 2016-01-07
Revised date: 2016-02-26
Online published: 2016-02-26
MWCNT (Multi-walled Carbon Nanotube) nanostructured surface was fabricated by CVD(Chemical Vapor Deposition) method on the silicon surface and utilized in flow boiling experiment to reveal its effect on subcooled flow boiling. The experiment was conducted with fluid of different temperatures and different velocities. Results show that as comparing with bare silicon surface at the same condition, MWCNT surface can enhance the subcooled flow boiling effectively with the heat flux increasing by up to 165%. Consequently, the enhancement is more obvious with higher velocities and higher surface temperature at the velocity between 118 kg/m2·s and 227 kg/m2·s.
CUI Wen-bin , HAN Yun-zhao , CUI Xin-gui , WEI Mei-rong , MA Hong-bin . Effect of MWCNT nanostructured surface on subcooled flow boiling[J]. Journal of Dalian Maritime University, 2016 , 42(3) : 89 -94 . DOI: 10.16411/j.cnki.issn1006-7736.2016.03.015
[1]王新亮,杨文刚,史晓平,等.纳米管阵列表面流动沸腾传热特性的实验研究[J].化工进展,2013,32(8):1771-1774.
WANG Xin-liang,YANG Wen-gang,SHI Xiao-ping,et al. Experimental research of flow boiling heat transfer with nanotube arrays surface on titanium[J].Chemical Industry and Engineering Progress,2013,32(8):1771-1774.(in Chinese)
[2]莫冬传,张晖,吕树申.TiO2纳米管阵列表面的池沸腾实验[J].化工学报,2014,65(增1):308-315.
MO Dong-chuan,ZHANG Hui,LV Shu-shen.Pool boiling experiment on TiO2 nanotube array surface[J].CIESC Journal,2014,65(S1):308-315.(in Chinese)
[3]HEITICH L V,PASSOS J C,CARDOSO E M,et al.Nucleate boiling of water using nanostructured surfaces[J].Journal of the Brazilian Society of Mechanical Sciences and Engineering January,2014,36(1):181-192.
[4]AHN H S,KANG S H,KIM M H.Visualized effect of alumina nanoparticles surface deposition on water flow boiling heat transfer[J].Experimental Thermal and Fluid Science,2012,37:154-163.
[5]CHEN R,LU M C,SRINVASAN V,et al.Nanowires for enhanced boiling heat transfer[J].Nano Letters,2009,9(2): 548-553.
[6]UJEREH S,MUDAWAR I,AMAMA P B,et al.Enhanced pool boiling using carbon nanotube surface arrays on a silicon surface[C]//Proceedings of the ASME Heat Transfer Division.New York,USA:AMER SOC Mechanical Engineers,2005:691-696.
[7]UJEREH S,FISHER T,MUDAWAR I.Effects of carbon nanotube arrays on nucleate pool boiling[J].International Journal of Heat and Mass Transfer,2007,50(19-20):4023-4038.
[8]AHN H S,SINHA N,ZHANG M,et al.Pool boiling experiments on multiwalled carbon nanotube (MWCNT) forests[J].Journal of Heat Transfer,2006,128(12):1335-1342.
[9]BANERJEE D, DHIR V K. Study of subcooled film boiling on a horizontal disc:Part I-analysis[J].Journal of Heat Transfer,2001,123(2):271-284.
[10]SATHYAMURTHI V,AHN H S,BANERJEE D,et al. Subcooled pool boiling experiments on horizontal heaters coated with carbon nanotubes[J].Journal of Heat Transfer, 2009,131(7):301-314.
[11]SINGH N,SATHYAMURTHY V,PETERSON W,et al. Flow boiling enhancement on a horizontal heater using carbon nanotube coatings[J].International Journal of Heat and Fluid Flow,2010,31(2):201-207.
[12]KLINE S J,MCCLINTOCK F A.Describing uncertainties in single sample experiments[J].Mechanical Engineering, 1953,75(1):38.
[13]KIM P,SHI L,MAJUMDAR M,et al.Thermal transport measurements of individual multiwalled nanotubes[J]. Physical Review Letters,2001,87(11):1-4.
[14]徐鹏飞,李强,宣益民.超亲水多孔表面制备及其池沸腾换热研究[J].工程热物理学报, 2014, 35 (8): 1606-1609.
XU Peng-fei,LI Qiang,XUAN Yi-min.Preparation and pool boiling heat transfer test of super-hydrophilic surface[J].Journal of Engineering Thermophysics,2014, 35(8):1606-1609.(in Chinese)
[15]陈粤,刘俊威,莫冬传,等.超疏水纳米结构表面池沸腾特性[J].工程热物理学报,2011,32(4): 634-636.
CHEN Yue,LIU Jun-wei,MO Dong-chuan,et al.Pooling boiling performance of superhydropholic nanostructured interface[J].Journal of Engineering Thermophysics,2011, 32(4): 634- 636.(in Chinese)
[16]JO H J,KIM S H,KIM H,et al.Nucleate boiling performance on nano/microstructures with different wetting surfaces[J]. Nanoscale Research Letters,2012,7(9):242-250.
[17]魏进家,本田博司.微结构表面上FC-72的强化沸腾换热研究[J].工程热物理学报,2006,27(2):247-251.
WEI Jin-jia, HONDA Hiroshi. Enhance boiling heat transfer of FC-72 from surfaces with microstructures[J].Journal of Engineering Thermophysics,2006,27(2):247-251.(in Chinese)
[18]VASSALLO P,KUMAR R,D’AMICO S.Pool boiling heat transfer experiments in silica-water nano-fluids[J]. International Journal of Heat and Mass Transfer,2004, 47(2):407-411.
[19]JO H J,AHN H S,KANG S H,et al.A study of nucleate boiling heat transfer on hydrophilic,hydrophobic and heterogeneous wetting surfaces[J].International Journal of Heat and Mass Transfer,2011,54(25-26):5643-5652.
[20]NAM Y,WU J,WARRIER G,et al.Experimental and numerical study of single bubble dynamics on a hydrophobic surface[J].Journal of Heat Transfer,2009,131(12):315-320.
/
| 〈 |
|
〉 |