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A Study of Supercharged HCCI Combustion using In-cylinder Spectroscopic Techniques and Chemical Kinetic Calculation

机译:使用缸面光谱技术和化学动力学计算的增压HCCI燃烧研究

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A great deal of interest is focused on Homogeneous Charge Compression Ignition (HCCI) combustion today as a combustion system enabling internal combustion engines to attain higher efficiency and cleaner exhaust emissions. Because the air-fuel mixture is compression-ignited in an HCCI engine, control of the ignition timing is a key issue. Additionally, because the mixture ignites simultaneously at multiple locations in the combustion chamber, it is necessary to control the resultant rapid combustion, especially in the high-load region. Supercharging can be cited as one approach that is effective in facilitating high-load operation of HCCI engines. Supercharging increases the intake air quantity to increase the heat capacity of the working gas, thereby lowering the combustion temperature for injection of the same quantity of fuel. In this study, experiments were conducted to investigate the effects of supercharging on combustion characteristics in an HCCI engine. Light emission and absorption spectroscopic measurement techniques were used to investigate the combustion behavior in detail. Chemical kinetic simulations were also conducted to analyze the reaction characteristics in detail. The results made clear that the raising the intake air pressure under a condition of a constant quantity of heat produced per cycle by the injected fuel has the effect of reducing the combustion temperature. As a result, combustion becomes more moderate. The results of spectroscopic measurement of light absorption also showed a sharp rise in absorbance at 293.1 nm, which is attributed to formaldehyde (HCHO) produced by the low-temperature reactions. Subsequently, absorbance dropped sharply at the time autoignition occurred.
机译:的极大兴趣今天的重点是均质压燃(HCCI)燃烧的燃烧系统,使内燃机以实现更高的效率和更清洁的尾气排放。因为空气 - 燃料混合物是压缩点火以HCCI发动机中,点火定时的控制是一个关键问题。此外,由于该混合物在燃烧室中的多个位置处同时点燃,必须控制所得到的快速燃烧,特别是在高负荷区域。增压可以被引用为一种方法,其有效促进HCCI发动机的高负荷运转。增压增大吸入空气量,以增加工作气体的热容量,从而降低了燃烧温度为燃料的相同量的注射。在这项研究中,进行实验来研究HCCI发动机的燃烧特性增压的效果。光的发射和吸收光谱的测量技术被用来研究详细的燃烧行为。还进行了化学动力学模拟来详细分析反应特性。结果清楚地表明,由喷射的燃料每次循环所产生的热量的恒定量的条件下提高的进气压力已降低燃烧温度的效果。其结果是,燃烧变得更温和。光吸收光谱测量的结果还表明在吸光度急剧上升在由低温反应产生293.1纳米,这归因于甲醛(HCHO)。随后,在发生自燃时吸收急剧下降。

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