Experimental Study on Spray Characteristics of Gasoline/Hydrogenated Catalytic Biodiesel under GCI Conditions

The new blended fuel (gasoline/hydrogenated catalytic biodiesel) is expected to address the cold start problem under low temperature of gasoline compression ignition due to its excellent ignition performance. Additionally, its spray behavior as the combustion boundary condition could have a direct i...

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Main Authors: Wenhua Yuan, Jingjing Liao, Bei Li, Wenjun Zhong
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Journal of Chemistry
Online Access:http://dx.doi.org/10.1155/2020/4285460
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spelling doaj-eb9fe162f0e24b90b5bab8a4edf1bdcd2020-11-25T03:18:20ZengHindawi LimitedJournal of Chemistry2090-90632090-90712020-01-01202010.1155/2020/42854604285460Experimental Study on Spray Characteristics of Gasoline/Hydrogenated Catalytic Biodiesel under GCI ConditionsWenhua Yuan0Jingjing Liao1Bei Li2Wenjun Zhong3Department of Mechanical and Energy Engineering, Shaoyang University, Shaoyang 422000, ChinaDepartment of Mechanical and Energy Engineering, Shaoyang University, Shaoyang 422000, ChinaSchool of Energy Power Engineering, Jiangsu University, Zhenjiang 212013, ChinaSchool of Energy Power Engineering, Jiangsu University, Zhenjiang 212013, ChinaThe new blended fuel (gasoline/hydrogenated catalytic biodiesel) is expected to address the cold start problem under low temperature of gasoline compression ignition due to its excellent ignition performance. Additionally, its spray behavior as the combustion boundary condition could have a direct impact on the characteristics of subsequent combustion. Therefore, the objective of this study is to reveal the effects of hydrogenated catalytic biodiesel/gasoline on the spray characteristics under various ambient conditions. As a significant index of spray characteristics, the spray penetration was achieved by applying Mie scattering methods under nonevaporation and evaporation conditions on a constant volume combustion chamber. In addition, the experimental results were compared against the calculated values of the models. As demonstrated by the results, a better spray performance can be achieved by the blended fuel than diesel and hydrogenated catalytic biodiesel. In respect of spray penetration, there is almost no difference among the three fuels under the ambient temperature of 323 K. Nevertheless, the blended fuel is lower than that of hydrogenated catalytic biodiesel and diesel when the ambient temperature is 434 K and 523 K. Moreover, the blended fuel is the first to reach the stable state, and the hydrogenated catalytic biodiesel is earlier than diesel for the spray penetration. Meanwhile, the spray model is identified as suitable for the blended fuel.http://dx.doi.org/10.1155/2020/4285460
collection DOAJ
language English
format Article
sources DOAJ
author Wenhua Yuan
Jingjing Liao
Bei Li
Wenjun Zhong
spellingShingle Wenhua Yuan
Jingjing Liao
Bei Li
Wenjun Zhong
Experimental Study on Spray Characteristics of Gasoline/Hydrogenated Catalytic Biodiesel under GCI Conditions
Journal of Chemistry
author_facet Wenhua Yuan
Jingjing Liao
Bei Li
Wenjun Zhong
author_sort Wenhua Yuan
title Experimental Study on Spray Characteristics of Gasoline/Hydrogenated Catalytic Biodiesel under GCI Conditions
title_short Experimental Study on Spray Characteristics of Gasoline/Hydrogenated Catalytic Biodiesel under GCI Conditions
title_full Experimental Study on Spray Characteristics of Gasoline/Hydrogenated Catalytic Biodiesel under GCI Conditions
title_fullStr Experimental Study on Spray Characteristics of Gasoline/Hydrogenated Catalytic Biodiesel under GCI Conditions
title_full_unstemmed Experimental Study on Spray Characteristics of Gasoline/Hydrogenated Catalytic Biodiesel under GCI Conditions
title_sort experimental study on spray characteristics of gasoline/hydrogenated catalytic biodiesel under gci conditions
publisher Hindawi Limited
series Journal of Chemistry
issn 2090-9063
2090-9071
publishDate 2020-01-01
description The new blended fuel (gasoline/hydrogenated catalytic biodiesel) is expected to address the cold start problem under low temperature of gasoline compression ignition due to its excellent ignition performance. Additionally, its spray behavior as the combustion boundary condition could have a direct impact on the characteristics of subsequent combustion. Therefore, the objective of this study is to reveal the effects of hydrogenated catalytic biodiesel/gasoline on the spray characteristics under various ambient conditions. As a significant index of spray characteristics, the spray penetration was achieved by applying Mie scattering methods under nonevaporation and evaporation conditions on a constant volume combustion chamber. In addition, the experimental results were compared against the calculated values of the models. As demonstrated by the results, a better spray performance can be achieved by the blended fuel than diesel and hydrogenated catalytic biodiesel. In respect of spray penetration, there is almost no difference among the three fuels under the ambient temperature of 323 K. Nevertheless, the blended fuel is lower than that of hydrogenated catalytic biodiesel and diesel when the ambient temperature is 434 K and 523 K. Moreover, the blended fuel is the first to reach the stable state, and the hydrogenated catalytic biodiesel is earlier than diesel for the spray penetration. Meanwhile, the spray model is identified as suitable for the blended fuel.
url http://dx.doi.org/10.1155/2020/4285460
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AT beili experimentalstudyonspraycharacteristicsofgasolinehydrogenatedcatalyticbiodieselundergciconditions
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