首页> 外文会议>International Conference on Petroleum Phase Behavior and Fouling; 20060625-29; Asheville,NC(US) >Combustion Stabilities and Cycle-by-Cycle Variations of n-Heptane Homogeneous Charge Compression Ignition Combustion
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Combustion Stabilities and Cycle-by-Cycle Variations of n-Heptane Homogeneous Charge Compression Ignition Combustion

机译:正庚烷均质充气压缩点火燃烧的燃烧稳定性和逐周期变化

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In this paper, the combustion stabilities and cycle-by-cycle variations of n-heptane homogeneous charge compression ignition (HCCI) combustion were investigated. In-cylinder pressures of 100 combustion cycles under typical operation conditions including partial burn (8.33 mg/cycle), normal combustion (12.6 mg/cycle), and knock combustion (16.7 mg/cycle) were recorded. Consequently, cycle-by-cycle variations of combustion parameters and performance parameters were analyzed. Furthermore, the interdependency between the combustion parameters and/or performance parameters was evaluated. The results reveals that, during the low-temperature reaction (LTR) region, the coefficient of variations (COV) of the ignition timing, initial temperature, and crank angle corresponding to the peak value of the heat release rate (HRR) are less than 3%. The cycle-by-cycle variations of the second stage combustion are strongly affected by the fuel equivalence ratio, and COVs improved substantially with the increase of the fuel concentrations. Meanwhile, both of the peak values of the HRR during the LTR and high-temperature reaction (HTR) show obviously cycle-to-cycle variations, and COVs increase with the fuel supply rate. Regarding the cycle-by-cycle variations of the performance parameters, COVs of the maximum in-cylinder pressure and pressure rise rate are very small except for the knock combustion. On the contrary, cycle-to-cycle variations of indicated mean effective pressure (IMEP) and indicated thermal efficiency are very small except for the partial combustion, and variations improve with the increase of the fuel supply rate.
机译:本文研究了正庚烷均质充量压缩点火(HCCI)燃烧的燃烧稳定性和逐周期变化。记录了在典型运行条件下的100个燃烧循环的缸内压力,包括部分燃烧(8.33 mg /循环),正常燃烧(12.6 mg /循环)和爆震(16.7 mg /循环)。因此,分析了燃烧参数和性能参数的逐周期变化。此外,评估了燃烧参数和/或性能参数之间的相互依赖性。结果表明,在低温反应(LTR)区域,点火正时,初始温度和对应于放热率(HRR)峰值的曲柄角的变异系数(COV)小于3%。燃料当量比强烈影响第二阶段燃烧的逐周期变化,并且随着燃料浓度的增加,COV显着提高。同时,LTR和高温反应(HTR)期间HRR的峰值都显示出明显的周期变化,并且COV随着燃料供给速率的增加而增加。关于性能参数的逐周期变化,除了爆震燃烧外,最大缸内压力和升压速率的COV非常小。相反,除了部分燃烧以外,指示平均有效压力(IMEP)和指示热效率的逐周期变化很小,并且随着燃料供给率的增加而变化得到改善。

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