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CAI Combustion of Gasoline and its Mixture with Ethanol in a 2-Stroke Poppet Valve DI Gasoline Engine

机译:二冲程提升阀DI汽油机中汽油及其与乙醇的混合物的CAI燃烧

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Controlled Auto Ignition (CAI), also known as Homogeneous Charge Compression Ignition (HCCI), is one of the most promising combustion technologies to reduce the fuel consumption and NOx emissions. Currently, CAI combustion is constrained at part load operation conditions because of misfire at low load and knocking combustion at high load, and the lack of effective means to control the combustion process. Extending its operating range including high load boundary towards full load and low load boundary towards idle in order to allow the CAI engine to meet the demand of whole vehicle driving cycles, has become one of the key issues facing the industrialisation of CAI/HCCI technology. Furthermore, this combustion mode should be compatible to different fuels, and can switch back to conventional spark ignition operation when necessary. In this paper, the CAI operation is demonstrated on a 2-stroke gasoline direct injection (GDI) engine equipped with a poppet valve train. The results shown that the CAI combustion can be readily achieved in the 2-stroke cycle of a poppet valve engine and the range of CAI combustion can be significantly extended compared to the 4-stroke cycle operation. In addition, the effects of ethanol concentration on 2-stroke CAI operational range, combustion process, emissions and efficiencies are studied and presented.
机译:受控自动点火(CAI),也称为均质充气压缩点火(HCCI),是减少燃料消耗和NOx排放的最有前途的燃烧技术之一。当前,由于在低负荷下的失火和在高负荷下的爆震燃烧,以及缺乏控制燃烧过程的有效手段,因此在部分负荷运行条件下限制了CAI燃烧。为了使CAI发动机满足整个车辆行驶周期的需求,将其工作范围从高负荷边界扩展到满负荷,将低负荷边界扩展到空转,已成为CAI / HCCI技术工业化面临的关键问题之一。此外,该燃烧模式应该与不同的燃料兼容,并且在必要时可以切换回常规的火花点火操作。在本文中,在配备提升气门机构的2冲程汽油直喷(GDI)发动机上演示了CAI操作。结果表明,与四冲程循环操作相比,在提升阀发动机的2冲程循环中可以轻松实现CAI燃烧,并且CAI燃烧的范围可以大大扩展。此外,研究并提出了乙醇浓度对二冲程CAI操作范围,燃烧过程,排放和效率的影响。

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