首页> 外文会议> >COMBUSTION EMISSIONS MODELING AND TESTING OF CONVENTIONAL DIESEL FUEL
【24h】

COMBUSTION EMISSIONS MODELING AND TESTING OF CONVENTIONAL DIESEL FUEL

机译:常规柴油的燃烧排放建模与测试

获取原文

摘要

This paper presents emissions modeling and testing of a four-stroke single cylinder diesel engine using conventional No. 2 diesel fuel. A system level engine simulation tool developed by Gamma Technologies, GT-Power, has been used to perform engine combustion simulations. The simulation approach is a predictive combustion simulation, direct-injection jet modeling, which is primarily used to predict the burn rate and NO_x emissions.Crank angle dependent fuel injector sac pressure profiles have been measured during combustion tests and used as fuel jet inputs in the combustion modeling to predict injected fuel mass and fuel jet velocity as a function of time. In each emissions test, an in-cylinder pressure profile was measured and used for combustion model calibration to assure a correct burn rate profile was predicted and the exhaust emissions prediction was based on a calibrated burn rate profile which closely resembled the one measured in the test. Engine emissions, which include NO_x, HC, CO, and CO_2, measured at various engine speeds and loads were compared to those predicted by the combustion simulations. The maximum differences between simulation-predicted and test-measured emissions data are 30% for the NO_x emissions and 68% for the CO_2 emissions. However, the results for CO and HC emissions could differ by more than an order of magnitude under the conditions tested.The modeling and testing evaluation of conventional diesel was chosen to provide a comparative baseline analysis that canbe extended for predicting combustion emissions of renewable feedstock fuels in development.
机译:本文介绍了使用常规2号柴油的四冲程单缸柴油机的排放建模和测试。由Gamma Technologies开发的系统级发动机仿真工具GT-Power已用于执行发动机燃烧仿真。该模拟方法是预测燃烧模拟,直接喷射射流建模,主要用于预测燃烧速率和NO_x排放量。 已经在燃烧测试期间测量了与曲轴转角相关的燃料喷射器囊压力曲线,并在燃烧模型中将其用作燃料喷射输入,以预测随时间变化的喷射燃料质量和燃料喷射速度。在每个排放测试中,都要测量缸内压力曲线并将其用于燃烧模型校准,以确保预测出正确的燃烧速率曲线,并且排气排放预测基于校准的燃烧速率曲线,该曲线与测试中测得的曲线非常相似。将在各种发动机转速和负荷下测得的发动机排放(包括NO_x,HC,CO和CO_2)与燃烧模拟预测的排放进行了比较。模拟预测的和测试测量的排放数据之间的最大差异是,NO_x排放量为30%,CO_2排放量为68%。但是,在测试条件下,CO和HC排放的结果可能相差一个数量级以上。 选择常规柴油的建模和测试评估以提供可比较的基线分析,从而可以 扩展用于预测开发中的可再生原料燃料的燃烧排放。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号