Wilson line determination for 2-2-4 trimethyl-pentane (iso-octane)

被引:0
|
作者
Determinación de la línea Wilson para el 2-2-4 trimetil-pentano
机构
[1] Márquez, Numa
[2] Lawes, Malcolm
[3] Lee, Yung-Yu
来源
| 1600年 / Revista Tecnica de la Facultad de Ingeniera, Apartado Postal 10 482, Maracaibo, 4002 A, Venezuela卷 / 36期
关键词
Equilibrium conditions - Expansion process - Homogeneous nucleation - Non equilibrium thermodynamics - Out of equilibrium - Thermodynamic equilibria - Vapour pressures - Wilson line;
D O I
暂无
中图分类号
学科分类号
摘要
Traditionally, properties for most substances are determined using graphs or equations obtained under thermodynamic equilibrium, however, real processes seldom occur in such circumstances. In a system under non-equilibrium thermodynamic conditions, condensation does not begin precisely when saturation is reached, this delay in the onset of condensation is called supersaturation and is defined as the ratio of the instantaneous fuel partial pressure to its vapour pressure. The onset of homogeneous nucleation (start of condensation), in terms of thermodynamic properties, is commonly called the Wilson point. The Wilson line is defined by a series of Wilson points obtained at different expansion conditions and represents the deviation with respect to the equilibrium condition in the process of condensation. This line was determined for iso-octane in the present work, at low expansion rates, based on a significant amount of measurements of pressure, temperature and drop size during expansion processes out of equilibrium in a combustion vessel at laminar and turbulent conditions.
引用
收藏
相关论文
共 50 条
  • [21] Laminar flame speeds of preheated iso-octane/O2/N2 and n-heptane/O2/N2 mixtures
    Kumar, K.
    Freeh, J. E.
    Sung, C. J.
    Huang, Y.
    JOURNAL OF PROPULSION AND POWER, 2007, 23 (02) : 428 - 436
  • [22] iso-octane partial oxidation over Ni-Sn/Ce0.75Zr0.25O2 catalysts
    Pengpanich, Sitthiphong
    Meeyoo, Vissanu
    Rirksomboon, Thirasak
    Schwank, Johannes
    CATALYSIS TODAY, 2008, 136 (3-4) : 214 - 221
  • [23] A survey of the phases and the metastable phases in the ternary systems of divalent metal [bis-2-ethylhexyl]-sulphosuccinate/iso-octane/water
    Garza, C
    Delgado, J
    Castillo, R
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2002, 14 (19) : 4805 - 4814
  • [24] Thermal Deactivation of Rh/α-Al2O3 in the Catalytic Partial Oxidation of Iso-Octane: Effect of Flow Rate
    Batista, Roberto
    Carrera, Andrea
    Beretta, Alessandra
    Groppi, Gianpiero
    CATALYSTS, 2019, 9 (06):
  • [25] An experimental and chemical kinetic modeling study of octane isomer oxidation. Part 1: 2,3,4-trimethyl pentane
    Heng, Yijun
    Kenny, Gavin
    Wang, Pengzhi
    Dong, Shijun
    Ghosh, Manik Kumer
    Li, Gesheng
    Liang, Junjie
    Curran, Henry J.
    COMBUSTION AND FLAME, 2024, 263
  • [26] Effect of CeO2-addition sequence on the performance of CeO2-modified Ni/Al2O3 catalyst in autothermal reforming of iso-octane
    Choi, Sang Ok
    Ahn, In Young
    Moon, Sang Heup
    KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2009, 26 (05) : 1252 - 1258
  • [27] Effect of CeO2-addition sequence on the performance of CeO2-modified Ni/Al2O3 catalyst in autothermal reforming of iso-octane
    Sang Ok Choi
    In Young Ahn
    Sang Heup Moon
    Korean Journal of Chemical Engineering, 2009, 26 : 1252 - 1258
  • [28] Catalytic Partial Oxidation of Iso-octane over Rh/α-Al2O3 in an Adiabatic Reactor: An Experimental and Modeling Study
    Carrera, Andrea
    Beretta, Alessandra
    Groppi, Gianpiero
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2017, 56 (17) : 4911 - 4919
  • [29] Effects of 2, 5-dimethylfuran/ethanol addition on soot formation in n-heptane/iso-octane/air coflow diffusion flames
    Ya, Yuchen
    Nie, Xiaokang
    Han, Weiwei
    Xiang, Longkai
    Gu, Mingyan
    Chu, Huaqiang
    ENERGY, 2020, 210 (210)
  • [30] Effects of CO2, H2O, and Exhaust Gas Recirculation Dilution on Laminar Burning Velocities and Markstein Lengths of Iso-Octane/Air Mixtures
    Endouard, C.
    Halter, F.
    Chauveau, C.
    Foucher, F.
    COMBUSTION SCIENCE AND TECHNOLOGY, 2016, 188 (4-5) : 516 - 528