LES and RANS Spray Combustion Analysis of OME3-5 and n-Dodecane

被引:0
|
作者
Wiesmann, Frederik [1 ]
Nguyen, Tuan M. [2 ]
Manin, Julien [2 ]
Pickett, Lyle M. [2 ]
Wan, Kevin [2 ]
Tagliante, Fabien [2 ]
Lauer, Thomas [1 ]
机构
[1] TU Wien, Inst Powertrains & Automot Technol, A-1060 Vienna, Austria
[2] Sandia Natl Labs, 7011 East Ave, Livermore, CA 94551 USA
关键词
CFD; OME; PODE; polyoxymethylene ether; e-fuels; oxygenated fuels; ECN; RANS; LES; spray combustion; LARGE-EDDY SIMULATION; DIMETHYL ETHERS; NEAR-WALL; PRESSURE; BLENDS; FLAMES;
D O I
10.3390/en17102265
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Clean-burning oxygenated and synthetic fuels derived from renewable power, so-called e-fuels, are a promising pathway to decarbonize compression-ignition engines. Polyoxymethylene dimethyl ethers (PODEs or OMEs) are one candidate of such fuels with good prospects. Their lack of carbon-to-carbon bonds and high concentration of chemically bound oxygen effectively negate the emergence of polycyclic aromatic hydrocarbons (PAHs) and even their precursors like acetylene (C2H2), enabling soot-free combustion without the soot-NOx trade-off common for diesel engines. The differences in the spray combustion process for OMEs and diesel-like reference fuels like n-dodecane and their potential implications on engine applications include discrepancies in the observed ignition delay, the stabilized flame lift-off location, and significant deviations in high-temperature flame morphology. For CFD simulations, the accurate modeling and prediction of these differences between OMEs and n-dodecane proved challenging. This study investigates the spray combustion process of an OME3 - 5 mixture and n-dodecane with advanced optical diagnostics, Reynolds-Averaged Navier-Stokes (RANS), and Large-Eddy Simulations (LESs) within a constant-volume vessel. Cool-flame and high-temperature combustion were measured simultaneously via high-speed (50 kHz) imaging with formaldehyde (CH2O) planar laser-induced fluorescence (PLIF) representing the former and line-of-sight OH* chemiluminescence the latter. Both RANS and LES simulations accurately describe the cool-flame development process with the formation of CH2O. However, CH2O consumption and the onset of high-temperature reactions, signaled by the rise of OH* levels, show significant deviations between RANS, LES, and experiments as well as between n-dodecane and OME. A focus is set on the quality of the simulated results compared to the experimentally observed spatial distribution of OH*, especially in OME fuel-rich regions. The influence of the turbulence modeling is investigated for the two distinct ambient temperatures of 900 K and 1200 K within the Engine Combustion Network Spray A setup. The capabilities and limitations of the RANS simulations are demonstrated with the initial cool-flame propagation and periodic oscillations of CH2O formation/consumption during the quasi-steady combustion period captured by the LES.
引用
收藏
页数:26
相关论文
共 50 条
  • [21] Effects of gas state equation on n-dodecane jet combustion
    Qin W.
    Lu D.
    Liu H.
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2020, 35 (01): : 66 - 74
  • [22] An Experimental Investigation of Supersonic Combustion of Mildly Cracked N-Dodecane
    Cui, Naifu
    Rao, Wei
    Li, Yujun
    Zhang, Taichang
    Fan, Xuejun
    COMBUSTION SCIENCE AND TECHNOLOGY, 2024, 196 (14) : 2336 - 2355
  • [23] Numerical study on the influence of injection pressure on the ignition and combustion of n-dodecane spray at cold-start conditions
    Shi, Zhongjie
    Liu, Fushui
    Shang, WeiWei
    Li, Yikai
    Sun, Chenghan
    Zhu, Ming
    FUEL, 2020, 264
  • [24] The influence of intermediate species on the combustion process of n-dodecane flame
    Zhao, Wanhui
    Zhou, Lei
    Qi, Jiayue
    Wei, Haiqiao
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART D-JOURNAL OF AUTOMOBILE ENGINEERING, 2020, 234 (2-3) : 334 - 348
  • [25] Laser diagnostics of low-temperature combustion in n-dodecane spray flames: Effects of injection pressure and duration
    Wei, Yi
    Zhang, Zunhua
    Zhou, Mengni
    Dong, Dongsheng
    Hu, Jiajia
    Zhang, Xiangjie
    Chen, Wei
    Xie, Xinyu
    Li, Gesheng
    FUEL, 2025, 393
  • [26] Effects of turbulence-chemistry interactions on auto-ignition and flame structure for n-dodecane spray combustion
    Zhang, Yan
    Wang, Hu
    Both, Ambles
    Ma, Likun
    Yao, Mingfa
    COMBUSTION THEORY AND MODELLING, 2019, 23 (05) : 907 - 934
  • [27] Effects of hydrogen addition on laminar dilute n-dodecane spray flames
    Zhang, Xiaoxu
    Wang, Xiao
    Liu, Yuen
    Zhou, Hua
    Ren, Zhuyin
    FUEL, 2023, 348
  • [28] A Study on Transient In-Flame Soot Evolution of n-Dodecane Spray
    Xuan T.
    Shi Z.
    Shang W.
    He Z.
    Wang Q.
    Hsi-An Chiao Tung Ta Hsueh/Journal of Xi'an Jiaotong University, 2024, 58 (03): : 15 - 24
  • [29] Mechanism Construction and Simulation for the High-Temperature Combustion of n-Dodecane
    Hua Xiao-Xiao
    Wang Jing-Bo
    Wang Quan-De
    Tan Ning-Xin
    Li Xiang-Yuan
    ACTA PHYSICO-CHIMICA SINICA, 2011, 27 (12) : 2755 - 2761
  • [30] Experimental and simulation study on the combustion characteristics of ammonia/n-dodecane mixtures
    Sun, Yu
    Qian, Yejian
    Sun, Ze
    Gong, Zhen
    Gu, Xiang
    FUEL, 2024, 358