2022
DOI: 10.1080/17597269.2022.2105867
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New insight into air/spray boundary interaction for diesel and biodiesel fuels under different fuel temperatures

Abstract: The liquid fuel breakup mechanism in spray injection with ambient air for diesel and biodiesel at different fuel temperatures is studied numerically. We find that biodiesel fuel type injection with low fuel temperature induces more air entrainment volume to the boundary of the spray than diesel fuel injection and higher fuel temperature. Meanwhile, the normalized parcel density for biodiesel is 12% larger than that of diesel and peaks at a shorter distance along the spray line from the injection point (42 vs. … Show more

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