首页> 外文会议>JSAE/SAE International Fuels and Lubricants Meeting >An Investigation of Combustion Control Using EGR for Small and Light HCCI Engine Fuelled With DME
【24h】

An Investigation of Combustion Control Using EGR for Small and Light HCCI Engine Fuelled With DME

机译:用DME燃料燃气EGR燃烧控制调查

获取原文

摘要

The HCCI engine could offer low NO{sub}x, PM emissions and high efficiency. However the operation region of the HCCI combustion is limited because of the knocking at high load and the misfire at low load. Moreover the HCCI principle lacks direct combustion control and needs a system to control the combustion phasing with high accuracy. Today there exists various ways to control the HCCI combustion, such as Variable Valve Train, Variable Compression Ratio, Inlet Air Heating and Dual Fuels. However such variable mechanisms and Inlet Air Heating tend to be heavy and complex. Dual Fuels method needs two types of fuels and has a challenge in infrastructure. In this study, in order to develop a small and light HCCI engine, a simple HCCI combustion control system is proposed. DME (Di-methyl Ether) is used as the fuel to keep the structure small and light. In this system, the mixing ratio of three gases: stoichiometric pre-mixture, hot EGR gas and cold EGR gas is changed by only throttles. Characteristics of the proposed HCCI combustion control system are evaluated experimentally. Both the load and the combustion phasing can be controlled by only two throttles. Focusing on each cycle data, cycle variability is observed. Therefore the nature of cycle variability is examined. It is caused by change of the mixing ratio of three gases and EGR property. For automatic control, output signals from engine are used as feedback signals. Therefore cycle variability must be low. The delay of CA50 (Crank Angle of 50% Heat Release), leads the high indicated thermal efficiency, but it also leads the increase of cycle variability. Though high indicated thermal efficiency is scarified, to avoid large cycle variability in automated control, CA50 around ATDC 7 degree is suitable in this system. Furthermore repeatability is observed in cycle variability of IMEP. There is a possibility to predict the future combustion.
机译:HCCI引擎可以提供低{Sub} X,PM排放和高效率。然而,由于高负荷的爆震和低负荷的爆震,HCCI燃烧的操作区域受到限制。此外,HCCI原理缺乏直接燃烧控制,并需要一种以高精度控制燃烧相位的系统。今天存在各种方法来控制HCCI燃烧,例如可变阀门列车,可变压缩比,入口空气加热和双燃料。然而,这种可变机构和入口空气加热趋于重且复杂。双燃料方法需要两种类型的燃料,在基础设施中具有挑战。在这项研究中,为了开发一个小巧的HCCI发动机,提出了一种简单的HCCI燃烧控制系统。 DME(二甲基醚)用作燃料,以保持结构小和光。在该系统中,三种气体的混合比例:化学计量预混合物,热EGR气体和冷EGR气体仅通过节流改变。实验评估所提出的HCCI燃烧控制系统的特性。负载和燃烧相位都可以仅由两个节流阀控制。专注于每个循环数据,观察到循环变异性。因此,检查了循环变异性的性质。它是由三个气体和EGR属性的混合比的变化引起的。对于自动控制,来自发动机的输出信号用作反馈信号。因此,循环变异必须低。 Ca50的延迟(曲柄角为50%热释放),引出了高指示的热效率,但也导致循环变异性的增加。虽然高指示的热效率幅度幅度幅度,以避免自动控制的大循环变异,但ATDC 7度周围的CA50适用于该系统。此外,在IMEP的循环变异性中观察到可重复性。有可能预测未来的燃烧。

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