ANALYSIS OF HOMOGENEOUS CHARGE COMPRESSION IGNITION ENGINE WITH EMPHASIS ON COMBUSTION TIMING AND REACTION RATE

A. Bhattacharya, P. Majumdar
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Abstract

ANALYSIS OF HOMOGENEOUS CHARGE COMPRESSION IGNITION ENGINE WITH EMPHASIS ON COMBUSTION TIMING AND REACTION RATE Arunim Bhattacharya, MS Department of Mechanical Engineering Northern Illinois University, 2017 Dr. Pradip Majumdar, Director HCCI engines are a class of engines which use high compression ratio to ignite a charge of air-fuel mixture, essentially eliminating the need for spark plugs. This contrasts with diesel engines (although HCCI can be used for diesel engines) where the fuel is injected near the top dead center of the compression stroke regime. Gasoline HCCI engine is of significance because it attempts to improve the characteristics of the engine, for example the thermal efficiency. High compression ratio comes with higher thermal efficiency, yet the peak temperature remains low enough to have low production rates of harmful oxides of nitrogen and formation of soot. However, there are certain challenges associated with such type of engine, one of which and perhaps the most important of all is how to control the combustion rate. Flow dynamics and chemical-kinetics analysis, are essential to predict combustion timing, duration, and rate. The objective of this study is to analyze a HCCI engine using simulation analysis models including a three-dimensional CFD simulation model. Simulation analysis is carried out using a generic HCCI engine, initially with simplified chemical kinetics and using detailed chemical kinetics and RANS turbulence CFD model. A sensitivity analysis of the effect of rpm on the combustion time, burn duration, heat release, efficiency and emission concentration is carried out. NORTHERN ILLINOIS UNIVERSITY
均质装药压缩点火发动机的分析,重点是燃烧正时和反应速率
Arunim Bhattacharya博士,北伊利诺伊大学机械工程系硕士,2017年,Pradip Majumdar博士,主任HCCI发动机是一类使用高压缩比点燃空气-燃料混合物的发动机,基本上不需要火花塞。这与柴油发动机(尽管HCCI可以用于柴油发动机)形成鲜明对比,柴油发动机在压缩冲程的上止点附近喷射燃料。汽油HCCI发动机的意义在于它试图改善发动机的特性,如热效率。压缩比越大,热效率越高,但峰值温度越低,有害氮氧化物的生成率和烟灰的形成率也就越低。然而,与这种类型的发动机相关的一些挑战,其中之一,也许是最重要的是如何控制燃烧速率。流动动力学和化学动力学分析是预测燃烧时间、持续时间和速率的关键。本研究的目的是利用包括三维CFD仿真模型在内的仿真分析模型对HCCI发动机进行分析。采用通用HCCI发动机进行仿真分析,首先采用简化的化学动力学,然后采用详细的化学动力学和RANS湍流CFD模型。对转速对燃烧时间、燃烧持续时间、放热、效率和排放浓度的影响进行了敏感性分析。北伊利诺伊大学
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