会议论文详细信息
Scientific Conference on Automotive Vehicles and Combustion Engines 2016
Numerical investigation of CAI Combustion in the Opposed- Piston Engine with Direct and Indirect Water Injection
Pyszczek, R.^1 ; Mazuro, P.^1 ; Teodorczyk, A.^1
Warsaw University of Technology, Institute of Heat Engineering, Nowowiejska Street 21/25, Warsaw
00-665, Poland^1
关键词: Combustion control;    Combustion pro-cess;    Controlled autoignition;    Engine performance;    High compression ratio;    Mechanical efficiency;    Numerical investigations;    Variable compression ratio;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/148/1/012083/pdf
DOI  :  10.1088/1757-899X/148/1/012083
来源: IOP
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【 摘 要 】

This paper is focused on the CAI combustion control in a turbocharged 2-stroke Opposed-Piston (OP) engine. The barrel type OP engine arrangement is of particular interest for the authors because of its robust design, high mechanical efficiency and relatively easy incorporation of a Variable Compression Ratio (VCR). The other advantage of such design is that combustion chamber is formed between two moving pistons - there is no additional cylinder head to be cooled which directly results in an increased thermal efficiency. Furthermore, engine operation in a Controlled Auto-Ignition (CAI) mode at high compression ratios (CR) raises a possibility of reaching even higher efficiencies and very low emissions. In order to control CAI combustion such measures as VCR and water injection were considered for indirect ignition timing control. Numerical simulations of the scavenging and combustion processes were performed with the 3D CFD multipurpose AVL Fire solver. Numerous cases were calculated with different engine compression ratios and different amounts of directly and indirectly injected water. The influence of the VCR and water injection on the ignition timing and engine performance was determined and their application in the real engine was discussed.

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