{"title":"Fast Response Measurement of Combustion Air to Fuel Ratio for Stratified Two-Stroke Engines","authors":"Klaus Geyer, C. Hallé, H. Roskamp","doi":"10.4271/2005-32-0109","DOIUrl":null,"url":null,"abstract":"Due to emission regulations for hand-held power tools more and more stratified-charge two-stroke engines enter into the market [Sawada et al. 1998, Zahn et al. 2000]. These engines require investigations and treatment for tuning the transient behaviour that are beyond the methods of the tuning for conventional engines. Especially the in-cylinder air-to-fuel-ratio cannot be determined from simple exhaust gas analysis any more. This paper presents an exhaust gas sampling system to enable the use of a standard lambda meter for a fast response measurement of air to fuel ratio out of the combustion chamber. The gas is sampled by means of a small restriction directly out of the combustion chamber. In case of miss-fire the hydrocarbon concentration in the sample is too high for the lambda sensor. With a dilution or a pre-converter system the hydrocarbon concentration can be adjusted to the range of the lambda sensor. Verification has been done with several tests. The air to fuel ratio in combustion is a key issue to tune the transient behaviour and to meet all customer requirements of the engine performance.","PeriodicalId":21404,"journal":{"name":"SAE transactions","volume":"26 1","pages":"1782-1787"},"PeriodicalIF":0.0000,"publicationDate":"2005-10-12","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"SAE transactions","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.4271/2005-32-0109","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Due to emission regulations for hand-held power tools more and more stratified-charge two-stroke engines enter into the market [Sawada et al. 1998, Zahn et al. 2000]. These engines require investigations and treatment for tuning the transient behaviour that are beyond the methods of the tuning for conventional engines. Especially the in-cylinder air-to-fuel-ratio cannot be determined from simple exhaust gas analysis any more. This paper presents an exhaust gas sampling system to enable the use of a standard lambda meter for a fast response measurement of air to fuel ratio out of the combustion chamber. The gas is sampled by means of a small restriction directly out of the combustion chamber. In case of miss-fire the hydrocarbon concentration in the sample is too high for the lambda sensor. With a dilution or a pre-converter system the hydrocarbon concentration can be adjusted to the range of the lambda sensor. Verification has been done with several tests. The air to fuel ratio in combustion is a key issue to tune the transient behaviour and to meet all customer requirements of the engine performance.
由于手持式电动工具的排放法规,越来越多的分层充能二冲程发动机进入市场[Sawada et al. 1998, Zahn et al. 2000]。这些发动机需要调查和处理,以调整瞬态行为,这超出了传统发动机的调整方法。特别是气缸内的空燃比已不能通过简单的尾气分析来确定。本文提出了一个废气采样系统,使使用一个标准的lambda仪表的快速响应测量空气燃料比走出燃烧室。气体通过一个小的限制装置直接从燃烧室中取样。在漏火的情况下,样品中的碳氢化合物浓度对于lambda传感器来说太高了。通过稀释或预转化器系统,碳氢化合物浓度可以调整到lambda传感器的范围内。已经通过几次测试进行了验证。空气燃料燃烧比是调节发动机瞬态性能和满足客户对发动机性能要求的关键问题。