首页> 外文期刊>Combustion Science and Technology >INVESTIGATION OF SI-HCCI HYBRID COMBUSTION AND CONTROL STRATEGIES FOR COMBUSTION MODE SWITCHING IN A FOUR-STROKE GASOLINE ENGINE
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INVESTIGATION OF SI-HCCI HYBRID COMBUSTION AND CONTROL STRATEGIES FOR COMBUSTION MODE SWITCHING IN A FOUR-STROKE GASOLINE ENGINE

机译:四冲程汽油机SI-HCCI混合燃烧的研究及燃烧模式切换的控制策略

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摘要

Homogeneous charge compression ignition (HCCI) combustion, also known as controlled autoignition (CAI) combustion, has been realized over a range of engine speed and load conditions in a single cylinder four-stroke gasoline engine equipped with a 4 VVAS mechanical variable intake and exhaust valve lift and timing devices system. The engine has the capability to operate either in the spark ignition (SI) or HCCI combustion in order to cover the complete engine operational range. Therefore, smooth switching between SI and HCCI modes is required. In this work, a systematic investigation has been carried out to study the transition between the conventional spark ignition combustion and HCCI combustion and develop the control strategies for optimized mode switch. Results show that dynamic transitions between HCCI and SI can be stably achieved around the boundaries of HCCI operation region through the rapid and effective control of the in-cylinder residual gas concentration by a Four Variable Valve Actuation System (4VVAS). It is found that switching from HCCI to SI operation is less problematic than that from SI to HCCI combustion operation, and certain regions of residual concentrations should he avoided. During the switching process, the spark timing and exhaust valve closing timing have the largest effect and can be optimized for mode switching. Two major approaches have been developed and applied to controlling the HCCI-SI transitions, through the dynamic management of residual gas and the management of hybrid heat release processes.
机译:在配备4 VVAS机械可变进气和排气功能的单缸四冲程汽油发动机中,均质充量压缩点火(HCCI)燃烧(也称为受控自燃(CAI)燃烧)已在一定的发动机转速和负载条件下实现气门升程和正时装置系统。发动机具有在火花点火(SI)或HCCI燃烧中运行的能力,以覆盖整个发动机运行范围。因此,需要在SI模式和HCCI模式之间进行平滑切换。在这项工作中,已经进行了系统的研究,以研究常规火花点火燃烧和HCCI燃烧之间的过渡,并开发了用于优化模式切换的控制策略。结果表明,通过四变量阀驱动系统(4VVAS)快速有效地控制缸内残留气体浓度,可以在HCCI操作区域周围稳定地实现HCCI和SI之间的动态过渡。已发现,从HCCI切换到SI运行比从SI切换到HCCI燃烧运行的问题少,应避免某些残留浓度区域。在切换过程中,火花正时和排气门关闭正时影响最大,可以针对模式切换进行优化。通过残余气体的动态管理和混合放热过程的管理,已经开发出两种主要方法并将其应用于控制HCCI-SI的转变。

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