首页> 外文会议>SAE World Congress, Detroit >Phased Air/Fuel Ratio Perturbation - A Fuel Control Technique for Improved Catalyst Efficiency
【24h】

Phased Air/Fuel Ratio Perturbation - A Fuel Control Technique for Improved Catalyst Efficiency

机译:相控空气/燃料比扰动 - 一种提高催化剂效率的燃料控制技术

获取原文

摘要

This paper describes the results of a study that examined the mechanism of phased perturbation as an emissions control technique. Phased perturbation involves independently controlling the fuel delivered to each bank of a dual bank engine (or each cylinder of a single manifold engine), which allows the two banks to have an adjustable, relative Air/Fuel (A/F) perturbation phase-shift from one another. The phase shifted exhaust is then recombined to achieve a near stoichiometric mixture prior to entering a single underbody catalyst. Phase shifting the exhaust Air/Fuel ratio creates a situation in which both rich exhaust constituents (unburnt hydrocarbons and carbon monoxide) and lean exhaust constituents (oxygen and oxides of nitrogen) arrive at the catalyst at the same time. The results of the study showed that phased perturbation produced a significant effect on A/F control and catalyst THC, CO, and NO{sub}x efficiency. The magnitude of the effect of phase shift on conversion efficiency was comparable to the effect of both frequency and amplitude. Due to the magnitude of the effect of A/F phase shifting on catalyst efficiency, it has been identified as a third dimension of A/F control for optimization of exhaust composition as it enters the catalyst. The development of this technique could augment or replace EGR for NO{sub}x control (particularly at high catalyst space velocity conditions and during cold engine operation when EGR may not be desirable), may greatly improve overall CO efficiency, and may help reduce cold- start vehicle emissions.
机译:本文介绍了一项研究的结果,该研究检查了作为排放控制技术的分阶段扰动的机制。相控扰动涉及独立地控制输送到每个银行的燃料(或单个歧管发动机的每个气缸),这允许两个银行具有可调节的相对空气/燃料(A / F)扰动相移彼此。然后在进入单一的底体催化剂之前重新结合相移排气以在进入单一的底层催化剂之前实现近的化学计量混合物。相移排气/燃料比产生了一种情况,其中富含废气成分(UNBurnt烃和一氧化碳)和稀释排气成分(氮气和氮气的氧化物)同时到达催化剂。该研究的结果表明,相位扰动对A / F对照和催化剂THC,CO和NO {SUB} X效率产生了显着影响。相移对转换效率的效果的幅度与频率和幅度的效果相当。由于A / F相移位对催化剂效率的影响,已经鉴定为A / F控制的第三尺寸,以优化排气组合物,因为它进入催化剂。这种技术的发展可以增强或更换NO {Sub} X控制的EGR(特别是在高催化剂空间速度条件下,当EGR可能不可取时的冷发动机运行期间)可能大大提高整体CO效率,并且可能有助于减少寒冷 - 开始车辆排放。

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