首页> 外文会议>International Conference on Engines Vehicles >Effects of Ethanol and Gasoline Blending and Dual Fueling on Engine Performance and Emissions.
【24h】

Effects of Ethanol and Gasoline Blending and Dual Fueling on Engine Performance and Emissions.

机译:乙醇和汽油混合的影响和双燃料对发动机性能和排放的影响。

获取原文

摘要

Ethanol is the most promising alternative fuel for spark ignition (SI) engines, that is blended with gasoline, typically. Moreover, in the last years great attention is paid to the dual fueling, ethanol and gasoline are injected simultaneously. This paper aims to analyze the better methods, blending or dual fueling in order to best exploit the potential of ethanol in improving engine performance and reducing pollutant emissions. The experimental activity was carried out in a small displacement single cylinder engine, representative of 2-3 wheel vehicle engines or of 3-4 cylinder small displacement automotive engines. It was equipped with a prototype gasoline direct injection (GDI) head. The tests were carried out at 3000, 4000, and 5000 rpm full load. The investigated engine operating conditions are representative of the European homologation urban driving cycle. Engine performance and gaseous and particle emissions were measured at the exhaust by means of a gas analyzer and a smoke meter. Particle size distribution function was measured in the range from 5.6 to 560 nm by means of an Engine Exhaust Particle Sizer (EEPS). The gaseous and particle measurements were performed upstream and downstream of a three way catalyst (TWC), respectively. The results show that the dual fuel configuration allows an improvement of the engine performance and a reduction of exhaust emissions.
机译:乙醇是火花点火(Si)发动机最有前途的替代燃料,通常与汽油混合。此外,在过去几年中,对双重燃料,同时注射乙醇和汽油。本文旨在分析更好的方法,混合或双重燃料,以便最好利用乙醇在提高发动机性能和减少污染物排放方面的潜力。实验活性在小型位移单缸发动机中进行,代表2-3轮车辆发动机或3-4个气缸小位移汽车发动机。它配备了原型汽油直喷(GDI)头部。测试在3000,4000和5000rpm满载时进行。调查的发动机操作条件是欧洲同源城市驾驶循环的代表。通过气体分析仪和烟雾计测量发动机性能和气体和颗粒排放。通过发动机排气粒子Sizer(EEP),在5.6至560nm的范围内测量粒度分布函数。分别在三种催化剂(TWC)的上游和下游进行气态和颗粒测量。结果表明,双燃料配置允许改善发动机性能和减少废气排放。

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