首页> 外文会议>International Meeting on Advances of Thermofluids >Controlled Auto-Ignition Combustion in a Two-Stroke Cycle Engine Using Hot Burned Gases
【24h】

Controlled Auto-Ignition Combustion in a Two-Stroke Cycle Engine Using Hot Burned Gases

机译:使用热烧气体的双行程循环发动机控制自动点火燃烧

获取原文

摘要

A new combustion concept, which is viewed increasingly as a probable solution to these issues is Controlled Auto-Ignition (CAI) Combustion. In such an engine, a homogeneous mixture of air, fuel and residual gases is compressed until auto-ignition occurs. Due to its significantly low temperature combustion, NO_x will be dramatically reduced while the mixture will be under ultra-lean fuel-air condition, thus able to achieve high efficiency and low emission. In the case of two-stroke engine, problem of poor combustion efficiency and excessive white smoke emission can be addressed by the incorporation some features that will ultimately convert a typical two-stroke engine into an efficient CAI engine demonstrating the best of both features. Due to its inherent high internal residual gas rate in partial load operation, the two-stroke engine has been the first application to benefit from the unconventional CAI combustion process. This paper will concisely discuss the utilization of hot burned gas for induction thus imposing a CAI combustion feature onto two-stroke cycle engine. Among the features incorporated are the increasing in the level of Exhaust gas Recirculation and cycle-by-cycle uniformity of the air-fuel ratio (AFR) supplied to cylinder, which will be crucial in creating a suitable temperature within the engine's combustion chamber.
机译:一种新的燃烧的概念,这越来越被认为是一个可能的解决方案,这些问题是受控自动点火(CAI)燃烧。在这种发动机中,空气,燃料和残留气体的均匀混合物被压缩,直到自动点火发生。由于其显著低温燃烧,会NO_x的显着地减少,同时将混合物将是超贫燃料 - 空气的条件下,从而能够实现高效率和低排放。在二冲程发动机的情况下,燃烧效率差和过分的白烟排放问题可以通过掺入一些特征,这将最终转换的典型二冲程发动机成一个高效发动机CAI展示最好的两个特征来解决。由于其固有的高的内部残余气体中部分负荷运行速度,两冲程发动机已经从非常规CAI燃烧过程中的第一应用的好处。本文将简明地讨论热燃烧气体的利用率为感应从而强加CAI燃烧特征到两个冲程循环发动机。中掺入的特征是在排气再循环和逐周期供给到气缸中的空气 - 燃料比(AFR),这将是在创建了发动机的燃烧室内的合适的温度关键的均匀性的水平的增加。

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