Experimental and kinetic modeling study of RP-3 kerosene: Development of a four-component surrogate for enhanced prediction of aromatic intermediates

被引:1
|
作者
Liang, Yilun [1 ]
Yang, Mo [1 ]
Zhang, Chi [2 ]
Wang, Juan [1 ]
机构
[1] Beihang Univ, Sch Energy & Power Engn, Natl Key Lab Sci & Technol Aeroengine Aerothermody, Beijing 100191, Peoples R China
[2] Beihang Univ, Res Inst Aeroengine, Natl Key Lab Sci & Technol Aeroengine Aerothermody, Beijing 100191, Peoples R China
基金
中国国家自然科学基金;
关键词
RP-3; kerosene; Surrogate fuel; Flow reactor; Detailed kinetic model; Aromatics; IGNITION CHARACTERISTICS; JET FUELS; P-XYLENE; OXIDATION; COMBUSTION; AUTOIGNITION; PYROLYSIS;
D O I
10.1016/j.combustflame.2024.113736
中图分类号
O414.1 [热力学];
学科分类号
摘要
RP-3 kerosene is currently the primary jet fuel used in China. However, limited attention has been paid to development of surrogate models that can predict formations of aromatics during RP-3 oxidation in a detailed way, such as by species mole fraction profiles. The present study aims to enrich the experimental database by measuring species mole fraction profiles, particularly focusing on aromatic intermediates, and propose a new surrogate model with a detailed kinetic model to enhance predictive accuracy for these intermediates. Oxidation experiments of real RP-3 kerosene were conducted using an atmospheric flow reactor at temperatures ranging from 800 to 1150 K and equivalence ratios of 0.5 and 2.0. The mole fraction profiles of species including oxygen, major products, important small molecular intermediates and several primary aromatic intermediates were measured using online gas chromatography (GC) and gas chromatography-mass spectrometry (GC-MS). Based on the chemical composition and fundamental physical properties of RP-3 kerosene, a surrogate consisting of 55.0 % n-undecane, 18.7 % trans-decalin, 19.8 % p-xylene and 6.5 % tetralin (by weight) was formulated. A detailed kinetic model of the surrogate was developed and validated against the measured data. Compared to the surrogate models proposed in the previous studies, the current model demonstrates superior predictive capabilities in forecasting the generation of major aromatic intermediates. According to the rate of production (ROP) analysis for the model, benzene generation is associated with three components: decalin, p-xylene and n-undecane. Decalin exhibits the highest contribution to benzene formation under both lean and rich conditions. Toluene predominantly originates from p-xylene, while indene and naphthalene are primarily produced by tetralin. These findings emphasize the significance of decalin as a representative bicyclic cycloalkane component and tetralin as a representative indane/tetralin component in establishing a surrogate for RP-3 fuel to enhance prediction of aromatic intermediates. Furthermore, validation through experimental data from the literature including species mole fraction profiles and ignition delay times confirms the broad applicability of this model.
引用
收藏
页数:14
相关论文
共 46 条
  • [31] Development of physical-chemical surrogate models and skeletal mechanism for the spray and combustion simulation of RP-3 kerosene fuels
    Bai, Yuanqi
    Wang, Ying
    Wang, Xiaochen
    Zhou, Qiongyang
    Duan, Qimeng
    ENERGY, 2021, 215
  • [32] Experimental Study on Reaction Kinetic Characteristics of RP-3 Fuel Vapor Catalyst
    Peng, Xiaotian
    Fan, Donghao
    Hu, Xuecheng
    Feng, Shiyu
    Peng, Hao
    Wang, Chenchen
    AEROSPACE, 2023, 10 (05)
  • [33] Experimental study on convective heat transfer characteristics of supercritical pressure RP-3 kerosene in serpentine tubes
    Han, Zhixiong
    Zhou, Weixing
    Zhao, Xudong
    Jia, Zhenjian
    APPLIED THERMAL ENGINEERING, 2025, 268
  • [34] Experimental and kinetic modeling study of ignition characteristics of RP-3 kerosene over low-to-high temperature ranges in a heated rapid compression machine and a heated shock tube
    Mao, Yebing
    Yu, Liang
    Wu, Zhiyong
    Tao, Wencao
    Wang, Sixu
    Ruan, Can
    Zhu, Lei
    Lu, Xingcai
    COMBUSTION AND FLAME, 2019, 203 : 157 - 169
  • [35] The influence of methyl butyrate and n-butanol on the laminar burning characteristics of RP-3: An experimental and kinetic modeling study
    Feng, Guangyuan
    Yang, Qing
    Liu, Zechang
    Jiang, Zhenghui
    Zhao, Chengyuan
    Jiang, Houshi
    Wang, Kun
    Fuentes, Andres
    Chen, Dongping
    He, Xu
    FUEL, 2023, 349
  • [36] EXPERIMENTAL STUDY OF THE INFLUENCE OF SURFACE COKE DEPOSITION ON HEAT TRANSFER OF AVIATION KEROSENE RP-3 AT SUPERCRITICAL PRESSURE
    Jia, Z. X.
    Xu, G. Q.
    Wen, J.
    Deng, H. W.
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION - 2012, VOL 7, PTS A-D, 2013, : 1927 - 1933
  • [37] An experimental and kinetic modeling study on the ignition kinetics of a sustainable aviation fuel and its blends with a traditional RP-3 jet fuel
    Wang, Quan-De
    Zeng, Ping
    Yao, Qian
    Liang, Jinhu
    Wang, Bi-Yao
    Huang, Fei
    Liu, Jian-Gang
    Xia, Zu-Xi
    FUEL, 2025, 380
  • [38] Single-Pulse Shock Tube Pyrolysis Study of RP-3 Jet Fuel and Kinetic Modeling
    Zeng, Ping
    Wang, Bi-Yao
    He, Ruining
    Liang, Jinhu
    Yang, Zhi-Yuan
    Xia, Zu-Xi
    Wang, Quan-De
    ACS OMEGA, 2021, 6 (16): : 11039 - 11047
  • [39] The combustion of kerosene: Experimental results and kinetic modelling using 1-to 3-component surrogate model fuels
    Dagaut, P
    El Bakali, A
    Ristori, A
    FUEL, 2006, 85 (7-8) : 944 - 956
  • [40] Experimental Study on Heat Transfer Deterioration of Supercritical-Pressure RP-3 Aviation Kerosene in a Vertical Downward Round Tube
    Wang Y.-H.
    Dong M.
    Li S.-F.
    Lu Y.-N.
    Tuijin Jishu/Journal of Propulsion Technology, 2022, 43 (06):