首页> 外文会议>2006 Fall Technical Conference of the ASME(American Society of Mechanical Engineers) Internal Combustion Engine Division >UTILIZING A CYCLE SIMULATION TO EXAMINE THE USE OF EGR FOR A SPARK-IGNITION ENGINE INCLUDING THE SECOND LAW OF THERMODYNAMICS
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UTILIZING A CYCLE SIMULATION TO EXAMINE THE USE OF EGR FOR A SPARK-IGNITION ENGINE INCLUDING THE SECOND LAW OF THERMODYNAMICS

机译:利用循环模拟来检查EGR在火花点火发动机中的使用,包括热力学第二定律

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摘要

The use of exhaust gas recirculation (EGR) for a spark-ignition engine was examined using a thermodynamic cycle simulation including the second law of thermodynamics. Both a cooled and an adiabatic EGR configuration were considered. The engine was a 5.7 liter, automotive engine operating from idle to wide open throttle, and up to 6000 rpm. First, the reduction of nitric oxides is quantified for the base case condition (bmep = 325 kPa, 1400 rpm, φ = 1.0 and MBT timing). Over 90% reduction of nitric oxides is obtained with about 18% EGR for the cooled configuration, and with about 26% EGR for the adiabatic configuration. For constant load and speed, the thermal efficiencies increase with increasing EGR for both configurations, and the results show that this increase is mainly due to decreasing pumping losses and decreasing heat losses. In addition, results from the second law of thermodynamics indicated an increase in the destruction of availability (ex-ergy) during the combustion process as EGR levels increase for both configurations. The major reason for this increase in the destruction of availability was the decrease in the combustion temperatures. Complete results for the availability destruction are provided for both configurations.
机译:使用包括热力学第二定律在内的热力学循环模拟研究了在火花点火发动机上使用排气再循环(EGR)。同时考虑了冷却和绝热EGR配置。该发动机为5.7升汽车发动机,从怠速运行到节气门全开,最高转速达6000 rpm。首先,针对基本情况(bmep = 325 kPa,1400 rpm,φ= 1.0和MBT时机)对一氧化氮的还原进行定量。对于冷却配置,约18%的EGR,对于绝热配置,约26%的EGR,可减少一氧化氮的90%以上。对于恒定的负载和速度,两种配置的热效率都随着EGR的增加而增加,结果表明,这种增加主要是由于减少了泵送损失并减少了热损失。另外,热力学第二定律的结果表明,在两种配置中,随着EGR含量的增加,燃烧过程中可用性(除能)的破坏也会增加。可用性降低的主要原因是燃烧温度降低。两种配置都提供了销毁可用性的完整结果。

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