[1] Huang H, Spadaccini L J, Sobel D R. Fuel-Cooled Thermal Management for Advanced Aeroengines[J]. Journal of Engineering for Gas Turbines and Power, 2004, 126(2): 284-293.
[2] 沈维道, 童钧耕. 工程热力学[M]. 北京:高等教育出版社, 2007.
[3] 沈宇纲, 黄东平, 张春路, 等. R410A和R407C热力性质简化计算[J]. 上海交通大学学报, 2001, 35(5): 737-740.
[4] 赵丹, 吴志刚, 丁国良. 超临界CO2热力性质及迁移性质快速计算方法[J]. 上海交通大学学报, 2004, 42(8): 1269-1273.
[5] 龙琼, 谷波. 过热区R22热力性质及传输特性的快速计算模型[J]. 流体机械, 2009, 37(2): 69-73.
[6] 常勇强, 曹子栋, 赵振兴, 等. 多组分气体热物性参数的计算方法[J]. 动力工程学报, 2010, 30(10): 772-776.
[7] 童景山. 气体混合物及液体混合物的粘度和导热系数 [J]. 化学工程, 1977, (1): 66-83.
[8] Edwards T, Maurice L Q. Surrogate Mixtures to Represent Complex Aviation and Rocket Fuels[J]. Journal of Propulsion and Power, 2001, 17(2): 461-466.
[9] Schulz W D. Oxidation Products of a Surrogate JP-8 Fuel[J]. Preprints-American Chemical Society, Division of Petroleum Chemistry, 1992, 37(2): 383-392.
[10] Violi A, Yan S, Eddings E G, et al. Experimental Formulation and Kinetic Model for JP-8 Surrogate Mixtures[J]. Combustion Science and Technology, 2002, 174(11-12): 399-417.
[11] Dagaut P. On the Kinetics of Hydrocarbons Oxidation from Natural Gas to Kerosene and Diesel Fuel[J]. Physical Chemistry Chemical Physics, 2002, 4(11): 2079-2094.
[12] 范学军, 俞刚. 大庆RP-3航空煤油热物性分析[J]. 推进技术, 2006, 27(2): 187-192. (FAN Xuejun, YU Gang. Analysis of Thermophysical Prop Erties of Daqing RP-3 Aviation Kerosene[J]. Journal of Propulsion Technology, 2006, 27(2): 187-192.)
[13] Zhong Fengquan, Fan Xuejun, Yu Gang, et al. Heat Transfer of Aviation Kerosene at Supercritical Conditions[J]. Journal of Thermophysics and Heat Transfer, 2009, 23(3): 543-550.
[14] Zhenjian Jia, Hongyan Huang, Weixing Zhong, et al. Experimental and Modeling Investigation of N-Decane Pyrolysis at Supercritical Pressures[J]. Energy & Fuels, 2014, 28: 6019-6028.
[15] Rongpei Jiang, Guozhu Liu, Xiangwen Zhang. Thermal Cracking of Hydrocarbon Aviation Fuels in Regenerative Cooling Microchannels[J]. Energy & Fuels, 2013, 27:2563-2577.
[16] Leland T W, Chappelear P S. The Corresponding States Principle—A Review of Current Theory and Practice[J].Industrial & Engineering Chemistry, 1968, 60(7): 15-43.
[17] Poling B E, Prausnitz J M, John Paul O C, et al. The Properties of Gases and Liquids[M]. New York: McGraw-Hill, 2001.
[18] Younglove B A, Ely J F. Thermophysical Properties of Fluids. II. Methane, Ethane, Propane, Isobutane, and Normal Butane[J]. Journal of Physical and Chemical Reference Data, 1987, 16(4): 577-798.
[19] Ely J F, Hanley H J M. Prediction of Transport Properties. 1. Viscosity of Fluids and Mixtures[J]. Industrial & Engineering Chemistry Fundamentals, 1981, 20(4): 323-332.
[20] 王跃武, 陈建新, 胡芃, 等. HFC-227ea 的焓、熵、比热容计算[J]. 中国科学技术大学学报, 2008, 38(1): 89-93.
[21] Ward T A, Ervin J S, Zabarnick S. Pressure Effect on Flowing Mildly-Cracked N-Decane[J]. Journal of Propulsion and Power, 2005, 21(2): 344-355.
[22] Ren Y Z, Zhu J Q, Deng H W. Numerical Study of Heat Transfer of RP-3 at Supercritical Pressure[J]. Advanced Materials Research, 2013, 663: 470-476.
[23] Huber M L. NIST Thermophysical Properties of Hydrocarbon Mixtures Database (SUPERTRAPP)[J]. NIST Standard Reference Database, 2003, 4. (编辑:张荣莉) * 收稿日期:2015-04-13;修订日期:2015-07-31。基金项目:国家自然科学基金(51406005);国防基础科研计划资助(B2120132006)。作者简介:程泽源,男,博士生,研究领域为超临界流动换热。E-mail: cheng_zeyuan@buaa.edu.cn
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