首页> 外文会议>ASME Internal Combustion Engine Division technical conference >COMBUSTION CHARACTERISTICS OF STRATIFIED MIXTURE IN LEAN-BURN LPG DIRECT-INJECTION ENGINE WITH SPRAY-GUIDED COMBUSTION SYSTEM
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COMBUSTION CHARACTERISTICS OF STRATIFIED MIXTURE IN LEAN-BURN LPG DIRECT-INJECTION ENGINE WITH SPRAY-GUIDED COMBUSTION SYSTEM

机译:喷雾导向燃烧系统的稀薄LPG直喷式发动机分层混合气的燃烧特性

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Today, we are faced with the problems of global warming and fossil fuel depletion, and they have led to the enforcement of new emissions regulations. Direct-injection spark-ignition engines are a very promising technology that can comply with the new regulations. These engines offer the advantages of better fuel economy and lower emissions than conventional port-injection engines. The use of LPG as the fuel reduces carbon emissions because of its vaporization characteristics and the fact that it has lower carbon content than gasoline. An experimental study was carried out to investigate the combustion process and emission characteristics of a 2-liter spray-guided LPG direct-injection engine under lean operating conditions. The engine was operated at a constant speed of 2000 rpm under 0.2-MPa brake mean effective pressure, which corresponds to a common operation point of a passenger vehicle. Combustion stability, which is the most important component of engine performance, is closely related to the operation strategy and it significantly influences the degree of fuel consumption reduction. In order to achieve stable combustion with a stratified LPG mixture, an inter-injection spark ignition (ISI) strategy, which is an alternative control strategy to two-stage injection, was employed. The effects of the compression ratio on fuel economy were also assessed; due to the characteristics of the stratified LPG mixture, the fuel consumption did not reduce when the compression ratio was increased.
机译:今天,我们面临着全球变暖和化石燃料枯竭的问题,它们导致了新排放法规的执行。直喷式火花点火发动机是一项非常有前途的技术,可以符合新法规。与传统的进气道喷射发动机相比,这些发动机具有更好的燃油经济性和更低的排放的优势。使用液化石油气作为燃料可减少碳排放,这是因为其具有汽化特性,而且其碳含量比汽油低。进行了一项实验研究,以研究2升喷雾引导式LPG直喷发动机在稀薄工况下的燃烧过程和排放特性。发动机在0.2 MPa制动平均有效压力下以2000 rpm的恒定速度运行,该平均压力对应于乘用车的常见运行点。燃烧稳定性是发动机性能中最重要的组成部分,它与运行策略密切相关,并显着影响燃油消耗的降低程度。为了使用分层的LPG混合物实现稳定的燃烧,采用了中间喷射火花点火(ISI)策略,该策略是两阶段喷射的替代控制策略。还评估了压缩比对燃油经济性的影响;由于分层LPG混合物的特性,当压缩比增加时,燃料消耗没有减少。

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