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Investigation research of gasoline direct injection on spray performance and combustion process for free piston linear generator with dual cylinder configuration

机译:汽油直喷对双缸配置自由活塞线性发生器喷涂性能和燃烧过程的研究

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摘要

Gasoline direct injection (GDI) properties, including injection pressure (IP), injection timing (IT) and injection angle (IA), have critical impacts on the cycle to cycle combustion variation that directly determines the long term stable operation for free piston linear generator (FPLG) with dual cylinder configuration. Therefore, in this present paper, the spray characteristics and combustion process of FPLG were explored through 9 cases that were designed by adopting orthogonal experimental method at different IP, IT and IA. Furthermore, the spray numerical model at different IP were validated with the spray experiment rig. The results displayed that, when at IT130 degrees CA BTDC, the maximum cylinder pressure is 4.1 MPa and the mixture concentration is 0.98. However, at IT120 degrees CA BTDC, the maximum cylinder pressure is 3.6 MPa and the mixture concentration is 0.94. Meanwhile, at IT100 degrees CA BTDC, the maximum cylinder pressure only reaches 3 MPa and the mixture concentration is 0.86. The results indicated that the increase of IT can make the fuel take advantage of strong airflow movement, so as to improve the mixture uniformity. Thus, the combustion quality and power performance are enhanced. Moreover, at IP12MPa, when we define the maximum mixing uniformity as 1, the mixture uniformity reaches 0.98, 0.94 and 0.86 with IT130 degrees CA BTDC, 120 degrees CA BTDC, 100 degrees CA BTDC, correspondingly. It is much higher than IP15MPa and IP7MPa, individually. It is can be explained by the interaction of high IP that can make fuel evaporation to form a mixture, thus reducing the fuel evaporation with the increase of penetration distance. In addition, IA has no obvious influence on the mixture uniformity, but reasonable IA could improve combustion quality within a certain range.
机译:汽油直喷(GDI)性质,包括注射压力(IP),注射正时(IA)和注射角度(IA),对循环的循环燃烧变化具有关键影响,该燃烧变化直接确定自由活塞线性发生器的长期稳定运行(FPLG)具有双缸配置。因此,在本文中,通过采用不同IP,IT和IA的正交实验方法设计的9例,探讨了FPLG的喷射特性和燃烧过程。此外,用喷涂实验钻机验证了不同IP的喷射数值模型。结果显示,当在IT130度CA BTDC时,最大气缸压力为4.1MPa,混合浓度为0.98。然而,在IT120度CA BTDC下,最大汽缸压力为3.6MPa,混合浓度为0.94。同时,在IT100度CA BTDC,最大汽缸压力仅达到3MPa,混合浓度为0.86。结果表明它的增加可以使燃料利用强气流运动,从而提高混合均匀性。因此,增强了燃烧质量和功率性能。此外,在IP12MPa,当我们将最大混合均匀性定义为1时,混合物均匀性达到0.98,0.94和0.86,IT130度CA BTDC,120度Ca BTDC,100度CA BTDC,相应地。它远远高于IP15MPA和IP7MPA,单独。通过高IP的相互作用可以使燃料蒸发形成混合物的相互作用可以解释,从而降低了渗透距离的燃料蒸发。此外,IA对混合物均匀性没有明显影响,但合理的IA可以提高一定范围内的燃烧质量。

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