Self-rewetting carbon nanofluid as working fluid for space and terrestrial heat pipes

被引:14
作者
Di Paola, R. [1 ]
Savino, R. [1 ]
Gattia, D. Mirabile [2 ]
Marazzi, R. [2 ]
Antisari, M. Vittori [2 ]
机构
[1] Univ Naples Federico II, DIAS Dept, Naples, Italy
[2] ENEA, UTTMAT, I-00123 Rome, Italy
关键词
Single-wall nanohorns; Nanofluids; Self-rewetting; Heat pipe; EFFECTIVE THERMAL-CONDUCTIVITY; SILVER NANO-FLUID; SUSPENSIONS; ENHANCEMENT;
D O I
10.1007/s11051-011-0601-y
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Thermal management is very important in modern electronic systems. Recent researches have been dedicated to the study of the heat transfer performances of binary heat transfer fluids with peculiar surface tension properties and in particular to that of "self-rewetting fluids", i.e., liquids with a surface tension increasing with temperature and concentration. Since in the course of liquid/vapor-phase change, self-rewetting fluids behavior induces a rather strong liquid inflow (caused by both temperature and concentration gradients) from the cold region (where liquid condensates) to the hot evaporator region, this fluids have been proposed and investigated as new heat transfer fluids for advanced heat transfer devices, e.g., heat pipes or heat spreaders for terrestrial and space applications (Savino et al. in Space Technol 25(1):59-61, 2009). The present work is dedicated to the study of the thermophysical properties of a new class of heat transfer fluids based on water/alcohol solutions with suspended carbon nanostructures, in particular single-wall carbon nanohorns (SWNH), synthesized by a homemade apparatus with an AC arc discharge in open air (Mirabile Gattia et al. in Nanotechnology 18:255604, 2007). SWNHs are cone-shaped nanoparticles with diameters between 1 and 5 nm and lengths in the range of 20-100 nm. SWNHs could be found in the form of quite-spherical aggregates with diameters ranging from 20 to 100 nm. The paper also discusses the results of these investigations and laboratory characterization tests of different heat pipes, including reference ordinary heat pipes and innovative pipes filled with self-rewetting fluids and self-rewetting nanofluids. The potential interest of the proposed studies stems from the large number of possible industrial applications, including space technologies and terrestrial applications, such as cooling of electronic components.
引用
收藏
页码:6207 / 6216
页数:10
相关论文
共 31 条
[1]  
Adamson A.W., 1967, PHYS CHEM SURFACES, V15
[2]  
Andreas JM., 1938, J PHY CHEM
[3]  
Antisari MV, 2009, MATER RES SOC SYMP P, V1142, P49
[4]   Thermal conductivity of suspensions of carbon nanotubes in water [J].
Assael, MJ ;
Chen, CF ;
Metaxa, I ;
Wakeham, WA .
INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2004, 25 (04) :971-985
[5]  
Bashforth S., 1882, An Attempt to test the Theory of Capillary Action
[6]   A benchmark study on the thermal conductivity of nanofluids [J].
Buongiorno, Jacopo ;
Venerus, David C. ;
Prabhat, Naveen ;
McKrell, Thomas ;
Townsend, Jessica ;
Christianson, Rebecca ;
Tolmachev, Yuriy V. ;
Keblinski, Pawel ;
Hu, Lin-wen ;
Alvarado, Jorge L. ;
Bang, In Cheol ;
Bishnoi, Sandra W. ;
Bonetti, Marco ;
Botz, Frank ;
Cecere, Anselmo ;
Chang, Yun ;
Chen, Gany ;
Chen, Haisheng ;
Chung, Sung Jae ;
Chyu, Minking K. ;
Das, Sarit K. ;
Di Paola, Roberto ;
Ding, Yulong ;
Dubois, Frank ;
Dzido, Grzegorz ;
Eapen, Jacob ;
Escher, Werner ;
Funfschilling, Denis ;
Galand, Quentin ;
Gao, Jinwei ;
Gharagozloo, Patricia E. ;
Goodson, Kenneth E. ;
Gutierrez, Jorge Gustavo ;
Hong, Haiping ;
Horton, Mark ;
Hwang, Kyo Sik ;
Iorio, Carlo S. ;
Jang, Seok Pil ;
Jarzebski, Andrzej B. ;
Jiang, Yiran ;
Jin, Liwen ;
Kabelac, Stephan ;
Kamath, Aravind ;
Kedzierski, Mark A. ;
Kieng, Lim Geok ;
Kim, Chongyoup ;
Kim, Ji-Hyun ;
Kim, Seokwon ;
Lee, Seung Hyun ;
Leong, Kai Choong .
JOURNAL OF APPLIED PHYSICS, 2009, 106 (09)
[7]   Particle Aspect-Ratio and Agglomeration-State Effects on the Effective Thermal Conductivity of Aqueous Suspensions of Multiwalled Carbon Nanotubes [J].
Cherkasova, Anna S. ;
Shan, Jerry W. .
JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2010, 132 (08) :1-11
[8]  
Choi S.U. S., 1995, Am. Soc. Mech. Eng, P99
[9]   Anomalous thermal conductivity enhancement in nanotube suspensions [J].
Choi, SUS ;
Zhang, ZG ;
Yu, W ;
Lockwood, FE ;
Grulke, EA .
APPLIED PHYSICS LETTERS, 2001, 79 (14) :2252-2254
[10]   Quantitative evaluation of nanotube content produced by arc discharge in a raw material [J].
Contini, V. ;
Mancini, R. ;
Marazzi, R. ;
Gattia, D. Mirabile ;
Antisari, M. Vittori .
PHILOSOPHICAL MAGAZINE, 2007, 87 (07) :1123-1137