[1] |
Choi S U S, Eastman J A. Enhancing thermal conductivity of fluids with nanoparticles in developments and applications of non-Newtonian flows// ASME International Mechanical Engineering Congress and Exposition [C]. New York, 1995, 231: 99-105.
|
[2] |
Li Qiang (李强), Xuan Yimin (宣益民). Copper-water nano fluid flow and convective heat transfer characteristics [J]. Science China: E (中国科学:E辑), 2002, 32(3): 331-337.
|
[3] |
Li Qiang (李强), Xuan Yimin (宣益民). The experimental research of nanometer fluid convection heat transfer [J]. Journal of Engineering Thermophysics (工程热物理学报), 2002, 23(6): 721-723.
|
[4] |
Zhong Xun (钟勋), Yu Xiaoli (俞小莉), Wu Jun (吴俊). Alumina organic nanofluids base flow and heat transfer characteristics [J]. CIESC Journal (化工学报), 2009, 60(1): 35-41.
|
[5] |
Wang Peng (王鹏), Bai Minli (白敏丽), Lü Jizu (吕继组), Hu Chengzhi (胡成志), Wang Yuyan (王玉艳). Turbulent pipe flow characteristics within nanofluids [J]. CIESC Journal (化工学报), 2014, 65(S1): 17-26.
|
[6] |
Halelfadl S, Estellé P, Maré T. Heat transfer properties of aqueous carbon nanotubes nanofluids in coaxial heat exchanger under laminar regime [J]. Experimental Thermal and Fluid Science, 2014, 55: 174-180.
|
[7] |
Rabienataj Darzi A A, Farhadi M, Sedighi K. Heat transfer and flow characteristics of Al2O3-water nanofluid in a double tube heat exchanger [J]. International Communications in Heat and Mass Transfer, 2013, 47: 105-112.
|
[8] |
Utomo A T, Haghighi E B, Zavareh A I T, Ghanbarpourgeravi M, Poth H, Khodabandeh R, Palm B, Pacek A W. The effect of nanoparticles on laminar heat transfer in a horizontal tube [J]. International Journal of Heat and Mass Transfer, 2014, 69: 77-91.
|
[9] |
Toms B A. Some observation on the flow of linear polymer solutions through straight tubes at large Reynolds numbers// Proceedings of the First International Congress Rheology [C]. Amsterdam, North Holland, 1949: 135-141.
|
[10] |
Ceng Renhai (岑仁海). Cetyl trimethyl ammonium chloride of drag reduction experiment research [D]. Harbin: Harbin Institute of Technology, 2009.
|
[11] |
Wang Dezhong (王德忠), Hu Youqing (胡友情), Wang Songping (王松平), Sun Shan (孙杉). The performance of the low concentration of surfactant drag reduction of fluid [J]. Journal of Shanghai Jiaotong University (上海交通大学学报), 2005, 39(2): 225-229.
|
[12] |
Ró?ański J. Flow of drag-reducing surfactant solutions in rough pipes [J]. Journal of Non-Newtonian Fluid Mechanics, 2011, 166: 279-288.
|
[13] |
Ge Wu, Kesselman E, Talmon E, Hart D J, Zakin J L. Effects of chemical structures of parahalobenzoates on micelle nanostructure, drag reduction and rheological behaviors of dilute CTAC solutions [J]. Journal of Non-Newtonian Fluid Mechanics, 2008, 154:1-12.
|
[14] |
Liu Zhenhua, Liao Liang. Forced convective flow and heat transfer characteristics of aqueous drag-reducing fluid with carbon nanotubes added [J]. International Journal of Thermal Sciences, 2010, 49: 2331- 2338.
|
[15] |
Song Bin (宋斌), Liao Liang (廖亮), Liu Zhenhua (刘振华). Drag fluid flow and heat transfer characteristics of carbon nanotubes [J]. Journal of Shanghai Jiaotong University (上海交通大学学报), 2010, 44(10): 1332-1336.
|
[16] |
Liao Liang (廖亮). Drag reduction nanofluid flow and heat transfer characteristics of the experimental study [D]. Shanghai: Shanghai Jiao Tong University, 2009.
|
[17] |
Yang Juancheng, Li Fengchen, He Yurong, Huang Yimin, Jiang Baocheng. Experimental study on the characteristics of heat transfer and flow resistance in turbulent pipe flows of viscoelastic-fluid-based Cu nanofluid [J]. International Journal of Heat and Mass Transfer, 2013, 62: 303-313.
|
[18] |
Yang Juancheng (阳倦成), Xu Hongpeng (徐鸿鹏), Li Fengchen (李凤臣). Nanofluid viscoelastic fluid rheological properties [J]. CIESC Journal (化工学报), 2014, 65(S1): 199-205.
|
[19] |
Baheri Islami S, Dastvareh B, Gharraei R. An investigation on the hydrodynamic and heat transfer of nanofluid flow with non-Newtonian base fluid in micromixers [J]. International Journal of Heat and Mass Transfer, 2014, 78: 917-929.
|
[20] |
Xia Guodong, Jiang Huanming, Liu Ran, Zhai Yuling. Effects of surfactant on the stability and thermal conductivity of Al2O3/de-ionized water nanofluids [J]. International Journal of Thermal Sciences, 2014, 84: 118-124.
|
[21] |
Li Xing (李兴), Chen Ying (陈颖), Mo Songping (莫松平), Jia Lisi (贾莉斯). Influence of surfactants on solid-liquid phase change of water-based nanofluids properties [J]. CIESC Journal (化工学报), 2013, 64(9): 3324-3330.
|
[22] |
Cheng Bo (程波), Du Kai (杜垲), Zhang Xiaosong (张小松), Niu Xiaofeng (牛晓峰). Stability of ammonia-black nanofluids [J]. Journal of Chemical Industry and Engineering (China) (化工学报), 2008, 59(S2): 49-52.
|
[23] |
Li Peiwen, Kawaguchi Y, Daisaka H, Yabe A, Hishida K, Maeda M. Heat transfer enhancement to the drag-reducing flow of surfactant solution in two-dimensional channel with mesh-screen inserts at the inlet [J]. Journal of Heat Transfer, 2001, 123(4): 779-789.
|
[24] |
Li F C, Kawaguchi Y. Investigation of turbulence structures in a drag-reduced turbulent channel flow with surfactant additive by stereoscopic particle image velocimetry [J]. Experiments in Fluids, 2006, 40(2): 218-230.
|
[25] |
Moffat R J. Describing the uncertainties in experimental results [J]. Experimental Fluid and Thermal Science, 1988, 1(1): 3-17.
|
[26] |
Dittus P W, Boelter L M K. Heat transfer in automobile radiators of the tubular type [J]. Univ. Calif. Publ. Eng., 1930, 2: 443-461.
|
[27] |
Dean R B. Reynolds number dependence of skin friction and other bulk flow variables in two-dimensional rectangular duct flow [J]. Fluid Eng., 1978, 100(3): 215-223.
|
[28] |
Ling Zhiyong (凌志勇), Zou Tao (邹涛), Ding Jianning (丁建宁), Cheng Guanggui (程广贵), Zhang Zhongqiang (张忠强), Sun Dongjian (孙东建), Qian Long (钱龙). Nanofluids viscosity characteristics [J]. CIESC Journal (化工学报), 2012, 63(5): 1409-1414.
|
[29] |
Pak B C, Cho Y I. Hydrodynamic and heat transfer study of dispersed fluids with submicron metallic oxide particles [J]. Exp. Heat Transfer, 1998, 11(2): 151-170.
|
[30] |
Xuan Yimin, Li Qiang. Investigation on convective heat transfer and flow features of nanofluids [J]. ASME J. Heat Transfer, 2003, 125(1): 151-155.
|
[31] |
M Chandra Sekhara Reddy, Veeredhi Vasudeva Rao. Experimental investigation of heat transfer coefficient and friction factor of ethylene glycol water based TiO2 nanofluid in double pipe heat exchanger with and without helical coil inserts [J]. International Communications in Heat and Mass Transfer, 2014, 50: 68-76.
|