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A study on the working characteristics of free piston linear generator with dual cylinder configuration by different secondary injection strategies

机译:不同二次注射策略双缸配置自由活塞线性发生器的工作特性研究

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Aiming at the dead center change of free piston linear generator with dual-cylinder configuration(FPLGDC), this paper proposes stratified combustion technology and studies the influence of secondary injection timing and injection ratio on the formation and combustion characteristics of stratified mixture. The results show as the secondary injection timing was advanced from 16 degrees CABTDC to 36 degrees CABTDC, local over-concentrated mixture in-cylinder was diluted, and the overall uniformity of the mixture was improved. Further, the overall evaporation increased from 89% to 97%. More, as secondary injection ratio decreased from 20% to 10%, the fuel evaporation ratio increased from 14% to 16%, and the stratification of the in-cylinder mixture at the ignition time was more obvious. Therefore, advancing the time of secondary injection and reducing secondary injection ratio can make the mixture more properly stratified, shorten the rapid combustion period, and improve combustion quality. Further, compared with the secondary injection ratio was 20% for secondary injection time at 16 degrees CABTDC, the peak pressure in the cylinder increased by 14%, and the peak pressure position increased by about 2 degrees CA when the secondary injection ratio was 10% at a secondary injection time of 36 degrees CABTDC. Thus, reasonable control the injection strategy can significantly improve the dynamic performance of FPLGDC. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文提出了具有双缸配置(FPLGDC)的自由活塞式线性发生器的死焦变化,提出了分层燃烧技术,研究了二次注射正时序和注射比对分层混合物的形成和燃烧特性的影响。结果表明,作为次级喷射正时从16度CABTDC提前到36度CABTDC,稀释局部过度浓缩混合物稀释,并改善了混合物的总均匀性。此外,总蒸发从89%增加到97%。更多,作为二次注射率从20%降至10%,燃料蒸发率从14%增加到16%,并且点火时间在缸内混合物的分层更明显。因此,推进次级注射的时间和减少二次注射率可以使混合物更适当分层,缩短快速燃烧时段,并提高燃烧质量。此外,与次级喷射时间相比,次级喷射比在16度CABTDC下比较为20%,圆柱体中的峰值压力增加14%,并且当次级注射率为10%时,峰值压力位置增加约2摄氏度在36度CABTDC的次级喷射时间。因此,合理的控制注射策略可以显着提高FPLGDC的动态性能。 (c)2021 elestvier有限公司保留所有权利。

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