Evaluation of the near-wall gas composition in SI-engines using fast gas sampling

被引:2
|
作者
Fischer, Marcus [1 ]
Lehrheuer, Bastian [1 ]
Pischinger, Stefan [1 ]
机构
[1] Rhein Westfal TH Aachen, Chair Thermodynam Mobile Energy Convers Syst, Forckenbeckstr 4, D-52074 Aachen, Germany
关键词
Hydrocarbon emissions; carbon monoxide emissions; fast gas sampling; flame quenching; enleanment; COMBUSTION;
D O I
10.1177/14680874221149603
中图分类号
O414.1 [热力学];
学科分类号
摘要
Future internal combustion engines using novel fuels and combustion systems have the potential to achieve ultra-high efficiency and lowest pollutant emissions to comply with future regulatory requirements. Realizing indicated efficiencies over 50% with ultra-lean low temperature combustion face new challenges. To meet this goal, hydrocarbon (HC) and carbon monoxide (CO) emissions need to be reduced significantly further. To do this, knowledge must be gained about how the operation regime of the engine affects the HC and CO emissions. Since these emissions partly originate from areas where flame quenching occurs, an investigation of the gases near the wall is of interest. To this end a fast gas sampling method is being developed to extract and analyze the gas from the combustion chamber. The used fast gas sampling valve from Kistler enables sampling durations of less than 1 ms. Fourier-transform-infrared spectroscopy and a fast mass spectroscopy allow the determination of the sample composition. The valve is positioned inside the cylinder head of a single cylinder engine between intake and exhaust valves. In order to assess the effects of engine operating conditions on the formation of HC and CO at the cylinder walls, the measurement uncertainty of the setup must be evaluated. Since the combustion process is subject to cyclic variations, the evaluation of only a few individual measurements is not meaningful. Therefore, mean values are determined from the evaluation of several measurements not performed consecutively. By examining the mean and standard deviation of these measurements for each species, one can determine a measurement error. In comparison, lean operation with RON95E10 fuel at an IMEP = 12 bar and an engine speed of n = 2000 1/min shows a significant reduction in intermediate hydrocarbon species such as acetylene and a significant increase in fuel species such as ethanol compared to stoichiometric operation.
引用
收藏
页码:3376 / 3387
页数:12
相关论文
共 50 条
  • [1] Stratification of exhaust gas in SI-engines
    Spiegel, Von Leo
    Haug, Michael
    Meyer, Joerg
    Andrian, Stephan V.
    MTZ Motortechnische Zeitschrift, 1996, 57 (7-8): : 408 - 415
  • [2] Calculations of the near-wall thermophoretic force in rarefied gas flow
    Gallis, MA
    Rader, DJ
    Torczynski, JR
    PHYSICS OF FLUIDS, 2002, 14 (12) : 4290 - 4301
  • [3] Investigation of Natural Gas Composition Effects on Knock Phenomenon in SI Gas Engines using Detailed Chemistry
    Javaheri, Ahmad
    Esfahanian, Vahid
    Salavati-Zadeh, Ali
    Darzi, Mehdi
    Mirsoheil, Seyyed Mojtaba
    ADVANCES IN APPLIED MECHANICS AND MATERIALS, 2014, 493 : 239 - +
  • [4] On Near-Wall Jets in a Disc-Like Gas Vortex Unit
    Niyogi, Kaustav
    Torregrosa, Maria M.
    Pantzali, Maria N.
    Heynderickx, Geraldine J.
    Marin, Guy B.
    Shtern, Vladimir N.
    AICHE JOURNAL, 2017, 63 (05) : 1740 - 1756
  • [5] Effect of Microbubble Gas Saturation on Near-Wall Turbulence and Drag Reduction
    Evseev, A. R.
    Mal'tsev, L. I.
    JOURNAL OF ENGINEERING THERMOPHYSICS, 2018, 27 (02) : 155 - 172
  • [6] Effect of Microbubble Gas Saturation on Near-Wall Turbulence and Drag Reduction
    A. R. Evseev
    L. I. Mal’tsev
    Journal of Engineering Thermophysics, 2018, 27 : 155 - 172
  • [7] Jet Expansion of Gas with Near-Wall Liquid Film from Nozzle into Vacuum
    Yarygin, Vyacheslav N.
    Prikhodko, Victor G.
    Yarygin, Igor V.
    MICROGRAVITY SCIENCE AND TECHNOLOGY, 2009, 21 : 271 - 275
  • [8] Jet Expansion of Gas with Near-Wall Liquid Film from Nozzle into Vacuum
    Vyacheslav N. Yarygin
    Victor G. Prikhodko
    Igor V. Yarygin
    Microgravity Science and Technology, 2009, 21 : 271 - 275
  • [9] Effect of near-wall air curtain on the wall deposition of droplets in a semidry flue gas desulfurization reactor
    Zhang, Jie
    You, Changfu
    Chen, Changhe
    Qi, Haiying
    Xu, Xuchang
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2007, 41 (12) : 4415 - 4421
  • [10] Near-wall dispersion, deposition and transformation of particles in automotive exhaust gas aftertreatment systems
    Strom, Henrik
    Sjoblom, Jonas
    Kannan, Ananda Subramani
    Ojagh, Houman
    Sundborg, Oskar
    Koegler, Jan
    INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2018, 70 : 171 - 180