1 |
Zhang C , Hu D , Ye L , et al . Review of the development of hypersonic vehicle technology abroad in 2017[J]. Tactical Missile Technology, 2018, (1): 47-50+78.
|
2 |
Duan H B . Progress in control approaches for hypersonic vehicle[J]. Science China Technological Sciences, 2012, 55(10): 2965-2970.
|
3 |
Li X , Wang Z . Exergy analysis of integrated TEG and regenerative cooling system for power generation from the scramjet cooling heat[J]. Aerospace Science & Technology, 2017, 66: 12-19.
|
4 |
Fry S . A century of ramjet propulsion technology evolution [J]. Journal of Propulsion and Power, 2004, 20(1): 27-58.
|
5 |
金烜, 沈赤兵, 吴先宇, 等 . 超燃冲压发动机再生冷却技术研究进展[J]. 火箭推进, 2016, 42(5): 66-73.
|
|
Jing X , Chen C B , Wu X Y , et al . Progress of regenerative cooling technology for scramjet[J]. Journal of Rocket Propulsion, 2016, 42(5): 66-73.
|
6 |
Deng H W , Zhang C B , Xu G Q , et al . Viscosity measurements of endothermic hydrocarbon fuel from (298 to 788) K under supercritical pressure conditions[J]. Journal of Chemical & Engineering Data, 2012, 57(2): 358-365.
|
7 |
Deng H W , Zhang C B , Xu G Q , et al . Density measurements of endothermic hydrocarbon fuel at sub- and supercritical conditions[J]. Journal of Chemical & Engineering Data, 2011, 56(6): 2980-2986.
|
8 |
Watanabe H . Thermal conductivity and thermal diffusivity of sixteen isomers of alkanes: C n H2 n +2 (n = 6 to 8)[J]. Journal of Chemical & Engineering Data, 2003, 48(1): 124-136.
|
9 |
Tan Z , Zhang J , Meng S , et al . A small sample-size automated adiabatic calorimeter from 70 to 580 K - molar heat capacities of alpha-Al2O3 [J]. Science in China, 1999, 42(4): 382-390.
|
10 |
Liang K L , Lin Y F , Leron R B , et al . Molar heat capacity of aqueous solutions of 1,3-diaminopropane and 1,4-diaminobutane and their piperazine blends[J]. Thermochimica Acta, 2015, 616: 42-48.
|
11 |
Feng S , Bi Q C , Pan H , et al . Isobaric specific heat capacities of emulsified kerosene at high temperature and pressure[J]. Thermochimica Acta, 2018, 665: 127-133.
|
12 |
Nakagawa S , Sato H , Watanabe K . Isobaric heat capacity data for liquid HCFC-123 (CHCl2CF3, 2, 2-dichloro-1, 1, 1-trifluoroethane)[J]. Cheminform, 2010, 22(30): 156-159.
|
13 |
Lukawski M Z , Ishmael M P E , Tester J W . Isobaric heat capacity measurements of supercritical R1234yf[J]. Journal of Chemical & Engineering Data, 2018, 63(2): 463-469.
|
14 |
Deng H W , Zhu K , Xu G Q , et al . Isobaric specific heat capacity measurement for kerosene RP-3 in the near-critical and supercritical regions[J]. Journal of Chemical & Engineering Data, 2011, 57(2): 263-268.
|
15 |
Tan Z C , Shi Q , Liu B P , et al . A fully automated adiabatic calorimeter for heat capacity measurement between 80 and 400 K[J]. Journal of Thermal Analysis and Calorimetry, 2008, 92(2): 67-374.
|
16 |
邢军, 谭志诚, 邸友莹, 等 . 4, 6-二甲氧基-2-嘧啶氨基甲酸甲酯的热力学研究[J]. 化学学报, 2004, 62(24): 2415-2420.
|
|
Xing J , Tan Z C , Di Y Y , et al . Thermodynamic study of methyl n-(4,6-dimethoxypyrimidin-2-yl)carbamate[J]. Acta Chimica Sinica, 2004, 62(24): 2415-2420.
|
17 |
王美涵 . 含氮杂环生物活性化合物的热化学研究[D]. 大连: 中国科学院大连化学物理研究所, 2005.
|
|
Wang M H . Thermochmical study of nitrogenous heterocyclic compounds with biological activity[D]. Dalian: Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 2005.
|
18 |
Zheng Y X , Gao H , Chen Q , et al . Isobaric heat capacity measurements of liquid HFE-7200 and HFE-7500 from 245 to 353K at pressures up to 15MPa[J]. Fluid Phase Equilibria, 2014, 372: 56-62.
|
19 |
杨峰, 朱晨阳, 刘向阳, 等 . 高压壬酸乙酯比定压热容的实验测量与关联[J]. 热科学与技术, 2019, 18(1): 16-20.
|
|
Yang F , Zhu C Y , Liu X Y , et al . Isobaric heat capacity of ethylnonanoate under high pressure: measurement and correlation[J]. Journal of Thermal Science and Technology, 2019, 18(1): 16-20.
|
20 |
Lv S , Zhao X , Liu Y . Measurements for isobaric specific heat capacity of ethyl fluoride (HFC-161) in liquid and vapor phase[J]. Fluid Phase Equilibria, 2016, 427: 429-437.
|
21 |
Czarnota I . Heat capacity of decane at high pressures[J]. Journal of Chemical Thermodynamics, 1993, 25(5): 639-642.
|
22 |
Gates J A , Wood R H , Cobos J C , et al . Densities and heat capacities of 1-butanol + n-decane from 298 K to 400 K[J]. Fluid Phase Equilibria, 1986, 27: 137-151.
|
23 |
Páramo R , Zouine M , Casanova C . New batch cells adapted to measure saturated heat capacities of liquids[J]. Journal of Chemical & Engineering Data, 2002, 47(3): 441-448.
|
24 |
Banipal T S , Garg S K , Ahluwalia J C . Heat capacities and densities of liquid n-octane, n-nonane, n-decane, and n-hexadecane at temperatures from 318.15 K to 373.15 K and at pressures up to 10 MPa[J]. Journal of Chemical Thermodynamics, 1991, 23(10): 923-931.
|
25 |
张筱喆, 闻洁, 徐国强, 等 . 超临界压力正癸烷定压比热测量[J]. 推进技术, 2017, 38(1): 214-219.
|
|
Zhang X Z , Wen J , Xu G Q , et al . Isobaric specific heat capacity measurements of n-decane at super-critical pressures[J]. Journal of Propulsion Technology, 2017, 38(1): 214-219.
|
26 |
Naziev Y M , Aliev M A . Thermal conductivity and specific heat of n-decane at various temperatures and pressures[J]. Journal of Engineering Physics, 1973, 24(6): 717-720.
|
27 |
Benson M S , Snyder P S , Winnick J . Heat capacities of liquid n-alkanes at elevated pressures[J]. Journal of Chemical Thermodynamics, 1971, 3(6): 891-898.
|
28 |
Peleteiro J , Troncoso J , González-Salgado D , et al . Excess isobaric molar heat capacities and excess molar volumes for ethanol + n-decane and n-undecane systems[J]. Journal of Chemical Thermodynamics, 2005, 37(9): 935-940.
|
29 |
Peleteiro J , González-Salgado D , Cerdeiriña C A , et al . Isobaric heat capacities, densities, isentropic compressibilities and second-order excess derivatives for (1-propanol + n-decane)[J]. Journal of Chemical Thermodynamics, 2002, 34(4): 485-497.
|
30 |
贺宇锋, 郭亚军, 冯松, 等 .超临界压力下乳化煤油比定压热容测量[J]. 推进技术, 2018, 39(7): 1660-1666.
|
|
He Y F , Guo Y J , Feng S , et al . Measurement of the isobaric specific heat of emulsified kerosene at supercritical pressure[J]. Journal of Propulsion Technology, 2018, 39(7): 1660-1666.
|
31 |
贺宇锋, 郭亚军, 冯松, 等 .高温下吸热型碳氢燃料定压比热容在线测量[J]. 热能动力工程, 2018, 33(8): 69-73.
|
|
He Y F , Guo Y J , Feng S , et al . On-line measurement of isobaric specific heat capacity for endothermic hydrocarbon fuel at high temperature[J]. Journal of Engineering for Thermal Energy and Power, 2018, 33(8): 69-73.
|
32 |
Wagner W , Pruß A . The IAPWS formulation 1995 for the thermodynamic properties of ordinary water substance for general and scientific use[J]. Journal of Physical and Chemical Reference Data, 2002, 31(2): 387-535.
|
33 |
Lemmon E W , Span R . Short fundamental equations of state for 20 industrial fluids[J]. Journal of Chemical & Engineering Data, 2006, 51(3): 785-850.
|
34 |
Garg S K , Banipal T S , Ahluwalia J C . Heat capacities and densities of liquid o-xylene, m-xylene, p-xylene, and ethylbenzene, at temperatures from 318.15 K to 373.15 K and at pressures up to 10 MPa[J]. Journal of Chemical Thermodynamics, 1993, 25(1): 57-62.
|