首页> 外文会议>JSAE/SAE International Powertrains, Fuels Lubricants Meeting >Analysis of Thermal Efficiency Improvement of a Highly Boosted, High Compression Ratio, Direct-Injection Gasoline Engine with LIVC and EIVC at Partial and Full Loads
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Analysis of Thermal Efficiency Improvement of a Highly Boosted, High Compression Ratio, Direct-Injection Gasoline Engine with LIVC and EIVC at Partial and Full Loads

机译:利用LiVC和EIVC在局部和满载中高升压,高压缩比的热效率改进分析

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摘要

The improvement mechanism of fuel consumption at partial and full loads of a boosted direction-injection gasoline engine with the elevated geometrical compression ratio and Miller cycle by either early or late intake valve closing (EIVC or LIVC) are analyzed based on the first law of thermodynamics and one dimensional engine simulation. An increase in geometric compression ratio increases the theoretical thermal efficiency for all the operating loads, but deteriorates the fuel economy at full loads, owing primarily to the full-load knock limit. Use of Miller cycle improves the fuel economy for both the partial and full load operations by reducing the pumping loss and optimizing the combustion phasing, respectively. A comparison between EIVC and LIVC on the influencing factors on the thermal efficiency at the partial load shows that EIVC leads to higher mechanical efficiency and less heat transfer loss than LIVC, and hence its efficiency improvement is superior over LIVC. In comparison with EIVC, the LIVC strategy performs better in reducing fuel consumption at the full load thanks to its more efficient burning and optimized combustion phasing in cylinder.
机译:通过早期或晚期进气门关闭(EIVC或LIVC)分析了升高的地几何压缩比和米勒循环的升高的方向喷射汽油发动机的燃料消耗的改善机制,基于第一热力学的第一定律进行了分析和一维发动机仿真。几何压缩比的增加会增加所有操作负荷的理论热效率,但主要载荷的燃料经济性劣化,主要是全负荷爆震限制。通过减少泵送损耗和优化燃烧相位,使用米勒循环的使用可以改善局部和全负荷操作的燃料经济性。 EIVC和LIVC之间的影响因素上的热效率在部分负载示出了比较可知EIVC带来更高的机械效率和比LIVC传热损失少,因此其效率的提高是在LIVC优异。与EIVC相比,由于其更有效的燃烧和优化的圆柱体阶段,LiVC策略在降低满载时的燃料消耗更好地执行更好。

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