不同环境压力下管道式燃油喷射的喷射行为分析

IF 3.6 2区 工程技术 Q1 MECHANICS International Journal of Multiphase Flow Pub Date : 2024-05-17 DOI:10.1016/j.ijmultiphaseflow.2024.104870
Feng Li, Run Zou, Pengyong Xie
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引用次数: 0

摘要

与自由喷射相比,导管式燃油喷射(DFI)具有减少烟尘排放的潜力。为了探索 DFI 在不同环境压力下的喷射性能,并顺应柴油发动机高强化的趋势,采用 LES 数值模型从喷射发展和气体夹带的角度研究和分析了 DFI 在环境气体压力为 3 MPa 至 12 MPa 时的喷射行为。可视化实验验证了数值结果。自由喷雾是与 DFI 喷雾进行比较的目标。研究结果表明,DFI 喷射与自由喷射之间的差异归因于喷射与管道之间的相互作用。管道壁与喷雾之间的环境气体是实现喷雾与管道相互作用的枢纽。随着环境压力的增加,更多的环境气体起着枢纽作用。与自由喷雾相比,DFI 喷雾的轴向和整体发展速度更快,而且随着环境压力的增加,其优势更加明显。风道内外的压力差会在风道入口处造成有规律的气体夹带。压降比和气体夹带率都随着环境压力的增加而降低。
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Analysis on spray behavior of ducted fuel injection under different ambient pressures

Ducted fuel injection (DFI) has the potential to reduce soot emissions with respect to free injection. To explore the spray performance of DFI under different ambient pressures as well as to keep up with the trend of high intensification in diesel engines, a LES numerical model was adopted to investigate and analyze the spray behavior of DFI in the perspectives of spray development and gas entrainment under the ambient gas pressure ranges from 3 MPa to 12 MPa. The numerical results were validated by the visualization experiment. Free spray was targeted for comparison with DFI spray. The investigation results indicated that the difference between DFI spray and free spray is attributed to the spray-duct interaction. The ambient gas between duct wall and spray acts as a pivot to achieve the spray-duct interaction. With ambient pressure increasing, more ambient gas plays the pivotal role. The axial and overall development of DFI spray is faster than those of free spray, and the advantage is more obvious with increasing ambient pressure. The pressure difference between the inside and outside of duct causes a regular gas entrainment at the duct inlet. The pressure drop ratio and the gas entrainment rate both decrease as ambient pressure increases.

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来源期刊
CiteScore
7.30
自引率
10.50%
发文量
244
审稿时长
4 months
期刊介绍: The International Journal of Multiphase Flow publishes analytical, numerical and experimental articles of lasting interest. The scope of the journal includes all aspects of mass, momentum and energy exchange phenomena among different phases such as occur in disperse flows, gas–liquid and liquid–liquid flows, flows in porous media, boiling, granular flows and others. The journal publishes full papers, brief communications and conference announcements.
期刊最新文献
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