[1] 崔超, 刘忠胜, 陈明.内减阻技术简述及涂层缺陷与对策[J].现代涂料与涂装, 2007, 10(7): 50.
[2] AJAYI O O, LLORENZO-MARTIN M D, FENSKE G R.Tribological synthesis method for producing low-friction surface film coating: US, 9476007 [P].2015-08-07.
[3] HORN A F, WU C D, PRILUTSKI D J, et al.High viscosity crude drag reduction [J].Oil & Gas journal, 1986,(6): 24-25.
[4] 张华平.减阻剂的研究现状与应用[J].化学工业与工程技术,2011(6): 28-32.
[5] 左艳梅.油品减阻剂的研究进展[J].工程技术与应用, 2010,7(1): 37-40.
[6] MOTIER J F, CHOU L C, TONG C L.Process for homogenizing polyolefin drag reducing agents: US, 6894088 [P].2004-12-16.
[7] 关中原, 税碧垣.新型成品油减阻剂的研制及现场应用试验[J].油气储运, 2006, 25(9): 40-44.
[8] WU F S, CAO H Z, CAI W H, et al.Review on the additive and the application of it in oil pipeline [J].Energy conservation technology, 2010, 9(5): 440-445.
[9] YANG Y Q, ZHENG W Y, LI X Z, et al.The research progress of poly-α-olefin drag reducing agent used in oil pipeline [J].Information recording materials, 2012, 13(6): 26-31.
[10] HALLIDAY W S, CLAPPER D K, BLAND R G.Drag reducing agents for oil-and synthetic-based fluids: US, 0158360 [P].2014-11-11.
[11] 王春晓,陆江银,薄文敏.高分子减阻剂减阻性能的影响因素研究[J].中国塑料, 2011, 25(6): 70-76.
[12] 焦利芳, 李凤臣.添加剂湍流减阻流动与换热研究综述[J].力学进展, 2008, 38(3): 339-357.
[13] 苏卫科, 王高生.高分子减阻剂溶液的热量传递[J].石油化工, 1991, 20(12): 841-844.
[14] YU B,KAWAGUCHI Y.DNS of fully developed turbulent heat transfer of a viscoelastic drag-reducing flow[J].International journal of heat and mass transfer, 2005, 48: 4569-4578.
[15] 阳倦成.黏弹性流体基铜纳米流体流动与传热实验研究[J].工程热物理学报, 2014, 35(2): 366-370.